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Introduction: The German PID-NET registry was founded in 2009, serving as the first national registry of patients with primary immunodeficiencies (PID) in Germany. It is part of the European Society for Immunodeficiencies (ESID) registry. The primary purpose of the registry is to gather data on the epidemiology, diagnostic delay, diagnosis, and treatment of PIDs.
Methods: Clinical and laboratory data was collected from 2,453 patients from 36 German PID centres in an online registry. Data was analysed with the software Stata® and Excel.
Results: The minimum prevalence of PID in Germany is 2.72 per 100,000 inhabitants. Among patients aged 1–25, there was a clear predominance of males. The median age of living patients ranged between 7 and 40 years, depending on the respective PID. Predominantly antibody disorders were the most prevalent group with 57% of all 2,453 PID patients (including 728 CVID patients). A gene defect was identified in 36% of patients. Familial cases were observed in 21% of patients. The age of onset for presenting symptoms ranged from birth to late adulthood (range 0–88 years). Presenting symptoms comprised infections (74%) and immune dysregulation (22%). Ninety-three patients were diagnosed without prior clinical symptoms. Regarding the general and clinical diagnostic delay, no PID had undergone a slight decrease within the last decade. However, both, SCID and hyper IgE- syndrome showed a substantial improvement in shortening the time between onset of symptoms and genetic diagnosis. Regarding treatment, 49% of all patients received immunoglobulin G (IgG) substitution (70%—subcutaneous; 29%—intravenous; 1%—unknown). Three-hundred patients underwent at least one hematopoietic stem cell transplantation (HSCT). Five patients had gene therapy.
Conclusion: The German PID-NET registry is a precious tool for physicians, researchers, the pharmaceutical industry, politicians, and ultimately the patients, for whom the outcomes will eventually lead to a more timely diagnosis and better treatment.
Rezensionen [2019]
(2019)
Verzeichnis
Einzelrezensionen
163 Babenhauserheide, Melanie: Harry Potter und die Widersprüche der Kulturindustrie. Eine ideologiekritische Analyse (DAVID N. SCHMIDT)
165 Ballis, Anja/Pecher, Claudia Maria/ Schuler, Rebecca (Hrsg.): Mehrsprachige Kinder- und Jugendliteratur. Überlegungen zur Systematik, Didaktik und Verbreitung (SVETLANA VISHEK)
167 Bannasch, Bettina/Matthes, Eva (Hrsg.): Kinder- und Jugendliteratur. Historische, erzähl- und medientheoretische, pädagogische und therapeutische Perspektiven (susanne blumesberger)
169 Batzke, Ina/ Erbacher, Eric C. /Heß, Linda M. / Lenhardt, Corinna (Hrsg.): Exploring the Fantastic. Genre, Ideology, and Popular Culture (THOMAS BITTERLICH)
170 Bertling, Maria: All-Age-Literatur. Die Entdeckung einer neuen Zielgruppe und ihrer Rezeptionsmodalitäten (NICOLA KÖNIG)
172 Blümer, Agnes: Mehrdeutigkeit übersetzen. Englische und französische Kinderliteraturklassiker der Nachkriegszeit in deutscher Übertrag (MARTINA SEIFERT)
174 Blumesberger, Susanne/Thunecke, Jörg (Hrsg.): Deutschsprachige Kinder- und Jugendliteratur während der Zwischenkriegszeit und im Exil. Schwerpunkt Österreich (KURT FRANZ)
176 Busch, Nathanael /Velten, Hans Rudolf (Hrsg.): Die Literatur des Mittelalters im Fantasyroman (SONJA LOIDL)
178 Cave, Roderick/Ayad, Sara (Hrsg.): Die Geschichte des Kinderbuches in 100 Büchern (ERNST SEIBERT)
180 Dettmar, Ute/Pecher, Claudia Maria/Schlesinger, Ron (Hrsg.): Märchen im Medienwechsel. Zur Geschichte und Gegenwart des Märchenfilms (MICHAEL STIERSTORFER)
182 Dommermuth, Clarissa: Wir sind dagegen – denn ihr seid dafür. Zur Tradition literarischer Jugendbewegungen im deutschsprachigen Raum (SUSANNE BLUMESBERGER)
184 Ellerbach, Benoît: L’Arabie contée aux Allemands. Fictions interculturelles chez Rafik Schami (ANNETTE KLIEWER)
185 Enklaar, Jattie/ Ester, Hans /Tax, Evelyne (Hrsg.): Studien über Kinder- und Jugendliteratur im europäischen Austausch von 1800 bis heute (IRIS SCHÄFER)
187 Ewers, Hans-Heino: Michael Ende neu entdecken. Was »Jim Knopf«,»Momo« und »Die unendliche Geschichte« Erwachsenen zu sagen haben (MARKUS JANKA)
189 Flegel, Monica/Parkes, Christopher (Hrsg.): Cruel Children in Popular Texts and Cultures (LENA HOFFMANN)
191 Garbe, Christine/Gürth, Christina et al. (Hrsg.): Attraktive Lesestoffe (nicht nur) für Jungen. Erzählmuster und Beispielanalysen zu populärer Kinder- und Jugendliteratur (THOMAS BITTERLICH)
193 Goga, Nina/Kümmerling-Meibauer, Bettina (Hrsg.): Maps and Mapping in Children’s Literature. Landscapes, Seascapes, and Cityscapes (Wolfgang Biesterfeld)
195 Hamer, Naomi /Nodelman, Perry / Reimer, Mavis (Hrsg.): More Words about Pictures. Current Research on Picturebooks and Visual/Verbal Texts for Young People (FARRIBA SCHULZ)
196 Hoffmann, Lena: Crossover. Mehrfachadressierung in Text, Markt und Diskurs (HEIDI LEXE)
198 Josting, Petra/Reuter, Frank/Roeder, Caroline/Wolters, Ute (Hrsg.): »Denn sie rauben sehr geschwind jedes böse Gassenkind.« ›Zigeuner‹-Bilder in Kinder- und Jugendmedien (KURT FRANZ)
200 Langemeyer, Peter /Knutsen, Karen Patrick (Hrsg.): Narratology Plus. Studies in Recent International Narratives for Children and
Young Adults / Narratologie Plus. Studien zur Erzählweise in aktueller internationaler Kinder- und Jugendliteratur (NADINE BIEKER)
202 Museumsinsel Lüttenheid (Hrsg.): Rudolf Dirks. Zwei Lausbuben und die Erfindung des modernen Comics (LUKAS SARVARI)
204 Oeste, Bettina/Preußer, Ulrike (Hrsg.): Neuvermessung deutschsprachiger Erinnerungsstrategien in der Kinder- und Jugendliteratur nach 1990 (annette kliewer)
206 Planka, Sabine (Hrsg.): Berlin. Bilder einer Metropole in erzählenden Medien für Kinder und Jugendliche (KATHARINA EGERER)
208 Press, Alexander: Die Bilder des Comics. Funktionsweisen aus kunst- und bildwissenschaftlicher Perspektive (RALF VOLLBRECHT)
209 Schenk, Klaus /Zeisberg, Ingold (Hrsg.): Fremde Räume. Interkulturalität und Semiotik des Phantastischen (ANNETTE KLIEWER)
211 Schweizerisches Institut für Kinder- und Jugendmedien SIKJM (Hrsg.): Atlas der Schweizer Kinderliteratur. Expeditionen und
Panoramen (SUSANNE RIEGLER)
Sammelrezensionen
213 Heinemann, Caroline: Produktionsräume im zeitgenössischen Kinder- und Jugendtheater. – Hentschel, Ingrid: Theater zwischen Ich und Welt. Beiträge zur Ästhetik des Kinder- und Jugendtheaters. Theorien – Praxis – Geschichte (PHILIPP SCHMERHEIM)
215 Janka, Marcus /Stierstorfer, Michael (Hrsg.): Verjüngte Antike. Griechisch-römische Mythologie in zeitgenössischen Kinder- und Jugendmedien. – Stierstorfer, Michael: Antike Mythologie in der Kinder- und Jugendliteratur der Gegenwart. Unsterbliche Götter- und Heldengeschichten? (KARINA BECKER)
218 Josting, Petra/Kruse, Iris (Hrsg.): Paul Maar. Bielefelder Poet in Residence 2015 | Paderborner Kinderliteraturtage 2016. – Wicke, Andreas /Roßbach, Nikola (Hrsg.): Paul Maar. Studien zum kinder- und jugendliterarischen Werk (SONJA MÜLLER-CARSTENS)
The Coulomb Dissociation (CD) cross sections of the stable isotopes 92,94,100Mo and of the unstable isotope 93Mo were measured at the LAND/R3B setup at GSI Helmholtzzentrum für Schwerionenforschung in Darmstadt, Germany. Experimental data on these isotopes may help to explain the problem of the underproduction of 92,94Mo and 96,98Ru in the models of p-process nucleosynthesis. The CD cross sections obtained for the stable Mo isotopes are in good agreement with experiments performed with real photons, thus validating the method of Coulomb Dissociation. The result for the reaction 93Mo(γ,n) is especially important since the corresponding cross section has not been measured before. A preliminary integral Coulomb Dissociation cross section of the 94Mo(γ,n) reaction is presented. Further analysis will complete the experimental database for the (γ,n) production chain of the p-isotopes of molybdenum.
The neutron capture cross section of several key unstable isotopes acting as branching points in the s-process are crucial for stellar nucleosynthesis studies, but they are very challenging to measure due to the difficult production of sufficient sample material, the high activity of the resulting samples, and the actual (n,γ) measurement, for which high neutron fluxes and effective background rejection capabilities are required. As part of a new program to measure some of these important branching points, radioactive targets of 147Pm and 171Tm have been produced by irradiation of stable isotopes at the ILL high flux reactor. Neutron capture on 146Nd and 170Er at the reactor was followed by beta decay and the resulting matrix was purified via radiochemical separation at PSI. The radioactive targets have been used for time-of-flight measurements at the CERN n_TOF facility using the 19 and 185 m beam lines during 2014 and 2015. The capture cascades were detected using a set of four C6D6 scintillators, allowing to observe the associated neutron capture resonances. The results presented in this work are the first ever determination of the resonance capture cross section of 147Pm and 171Tm. Activation experiments on the same 147Pm and 171Tm targets with a high-intensity 30 keV quasi-Maxwellian flux of neutrons will be performed using the SARAF accelerator and the Liquid-Lithium Target (LiLiT) in order to extract the corresponding Maxwellian Average Cross Section (MACS). The status of these experiments and preliminary results will be presented and discussed as well.
An accurate measurement of the 140Ce(n,γ) energy-dependent cross-section was performed at the n_TOF facility at CERN. This cross-section is of great importance because it represents a bottleneck for the s-process nucleosynthesis and determines to a large extent the cerium abundance in stars. The measurement was motivated by the significant difference between the cerium abundance measured in globular clusters and the value predicted by theoretical stellar models. This discrepancy can be ascribed to an overestimation of the 140Ce capture cross-section due to a lack of accurate nuclear data. For this measurement, we used a sample of cerium oxide enriched in 140Ce to 99.4%. The experimental apparatus consisted of four deuterated benzene liquid scintillator detectors, which allowed us to overcome the difficulties present in the previous measurements, thanks to their very low neutron sensitivity. The accurate analysis of the p-wave resonances and the calculation of their average parameters are fundamental to improve the evaluation of the 140Ce Maxwellian-averaged cross-section.
Background; Salivary gland carcinomas (SGC) cover a heterogeneous group of malignancies with a lack of data of high-level evidence.
Methods; Clinical data of 127 patients treated for SGC at a university cancer center between 2002 and 2017 were analyzed retrospectively. The association of clinicopathological characteristics, treatment modalities, adverse events, and outcome was assessed.
Results: Patients received surgery (n = 65), surgery followed by (chemo-)radiotherapy (n = 56), or primary (chemo-)radiotherapy (n = 6). Injury to the cranial nerves or their branches was the most frequent surgical complication affecting 40 patients (33.1%). Ten year overall and progression-free survival rates were 73.2% and 65.4%, respectively. Parotid tumor site, advanced tumor, and positive nodal stage remained independent negative prognostic factors for overall survival, loco-regional and distant tumor control in multivariate analysis.
Conclusions: Optimizing treatment strategies for SGC, depending on distinct clinicopathological factors, remains challenging due to the low incidence rates of the disease.
Background: The photon strength functions (PSFs) and nuclear level density (NLD) are key ingredients for calculation of the photon interaction with nuclei, in particular the reaction cross sections. These cross sections are important especially in nuclear astrophysics and in the development of advanced nuclear technologies.
Purpose: The role of the scissors mode in the M1 PSF of (well-deformed) actinides was investigated by several experimental techniques. The analyses of different experiments result in significant differences, especially on the strength of the mode. The shape of the low-energy tail of the giant electric dipole resonance is uncertain as well. In particular, some works proposed a presence of the E1 pygmy resonance just above 7 MeV. Because of these inconsistencies additional information on PSFs in this region is of great interest.
Methods: The γ-ray spectra from neutron-capture reactions on the 234U, 236 U, and 238 U nuclei have been measured with the total absorption calorimeter of the n_TOF facility at CERN. The background-corrected sum-energy and multi-step-cascade spectra were extracted for several isolated s-wave resonances up to about 140 eV.
Results: The experimental spectra were compared to statistical model predictions coming from a large selection of models of photon strength functions and nuclear level density. No combination of PSF and NLD models from literature is able to globally describe our spectra. After extensive search we were able to find model combinations with modified generalized Lorentzian (MGLO) E1 PSF, which match the experimental spectra as well as the total radiative widths.
Conclusions: The constant temperature energy dependence is favored for a NLD. The tail of giant electric dipole resonance is well described by the MGLO model of the E1 PSF with no hint of pygmy resonance. The M1 PSF must contain a very strong, relatively wide, and likely double-resonance scissors mode. The mode is responsible for about a half of the total radiative width of neutron resonances and significantly affects the radiative cross section.
Above 1 MeV of incident neutron energy the fission fragment angular distribution (FFAD) has generally a strong anisotropic behavior due to the combination of the incident orbital momentum and the intrinsic spin of the fissioning nucleus. This effect has to be taken into account for the efficiency estimation of devices used for fission cross section measurements. In addition it bears information on the spin deposition mechanism and on the structure of transitional states. We designed and constructed a detection device, based on Parallel Plate Avalanche Counters (PPAC), for measuring the fission fragment angular distributions of several isotopes, in particular 232Th. The measurement has been performed at n_TOF at CERN taking advantage of the very broad energy spectrum of the neutron beam. Fission events were recognized by back to back detection in coincidence in two position-sensitive detectors surrounding the targets. The detection efficiency, depending mostly on the stopping of fission fragments in backings and electrodes, has been computed with a Geant4 simulation and validated by the comparison to the measured case of 235U below 3 keV where the emission is isotropic. In the case of 232Th, the result is in good agreement with previous data below 10 MeV, with a good reproduction of the structures associated to vibrational states and the opening of second chance fission. In the 14 MeV region our data are much more accurate than previous ones which are broadly scattered.
Objectives: The SAVI-TF (Symetis ACURATE neo Valve Implantation Using Transfemoral Access) registry was initiated to study the ACURATE neo transcatheter heart valve in a large patient population treated under real-world conditions.
Background: The self-expanding, supra-annular ACURATE neo prosthesis is a transcatheter heart valve that gained the Conformité Européene mark in 2014, but only limited clinical data are available so far.
Methods: This prospective, multicenter registry enrolled 1,000 patients at 25 European centers who were followed for 1 year post-procedure.
Results: Mean patient age was 81.1 ± 5.2 years; mean logistic European System for Cardiac Operative Risk Evaluation I score, European System for Cardiac Operative Risk Evaluation II score, and Society of Thoracic Surgeons score were 18.1 ± 12.5%, 6.6 ± 7.5%, and 6.0 ± 5.6%, respectively. At 1 year, 8.0% (95% confidence interval [CI]: 6.3% to 9.7%) of patients had died, 2.3% (95% CI: 1.3% to 3.2%) had disabling strokes, and 9.9% (95% CI: 8.1% to 11.8%) had permanent pacemaker implantations. Through 1 year, 5 reinterventions (0.5%; 95% CI: 0.1% to 1.0%) were performed: 3 valve-in-valve and 2 surgical aortic valve replacements. Mean effective orifice area was 1.84 ± 0.43 cm2, mean gradient was 7.3 ± 3.7 mm Hg, and greater than mild paravalvular leakage was observed in 3.6% of patients.
Conclusions: Transfemoral implantation of the ACURATE neo prosthesis resulted in favorable 1-year clinical and echocardiographic outcomes with very low mortality and new pacemaker rates.
Purpose: Molecular diagnostics including next generation gene sequencing are increasingly used to determine options for individualized therapies in brain tumor patients. We aimed to evaluate the decision-making process of molecular targeted therapies and analyze data on tolerability as well as signals for efficacy.
Methods: Via retrospective analysis, we identified primary brain tumor patients who were treated off-label with a targeted therapy at the University Hospital Frankfurt, Goethe University. We analyzed which types of molecular alterations were utilized to guide molecular off-label therapies and the diagnostic procedures for their assessment during the period from 2008 to 2021. Data on tolerability and outcomes were collected.
Results: 413 off-label therapies were identified with an increasing annual number for the interval after 2016. 37 interventions (9%) were targeted therapies based on molecular markers. Glioma and meningioma were the most frequent entities treated with molecular matched targeted therapies. Rare entities comprised e.g. medulloblastoma and papillary craniopharyngeoma. Molecular targeted approaches included checkpoint inhibitors, inhibitors of mTOR, FGFR, ALK, MET, ROS1, PIK3CA, CDK4/6, BRAF/MEK and PARP. Responses in the first follow-up MRI were partial response (13.5%), stable disease (29.7%) and progressive disease (46.0%). There were no new safety signals. Adverse events with fatal outcome (CTCAE grade 5) were not observed. Only, two patients discontinued treatment due to side effects. Median progression-free and overall survival were 9.1/18 months in patients with at least stable disease, and 1.8/3.6 months in those with progressive disease at the first follow-up MRI.
Conclusion: A broad range of actionable alterations was targeted with available molecular therapeutics.
However, efficacy was largely observed in entities with paradigmatic oncogenic drivers, in particular with BRAF mutations. Further research on biomarker-informed molecular matched therapies is urgently necessary.
Destruction of the cosmic γ-ray emitter 26Al in massive stars: study of the key 26Al(n,p) reaction
(2021)
The 26Al(n,p)26Mg reaction is the key reaction impacting on the abundances of the cosmic γ-ray emitter 26Al produced in massive stars and impacts on the potential pollution of the early solar system with 26Al by asymptotic giant branch stars. We performed a measurement of the 26Al(n,p)26Mg cross section at the high-flux beam line EAR-2 at the n_TOF facility (CERN). We report resonance strengths for eleven resonances, nine being measured for the first time, while there is only one previous measurement for the other two. Our resonance strengths are significantly lower than the only previous values available. Our cross-section data range to 150 keV neutron energy, which is sufficient for a reliable determination of astrophysical reactivities up to 0.5 GK stellar temperature.
Epigenetic neural glioblastoma enhances synaptic integration and predicts therapeutic vulnerability
(2023)
Neural-tumor interactions drive glioma growth as evidenced in preclinical models, but clinical validation is nascent. We present an epigenetically defined neural signature of glioblastoma that independently affects patients survival. We use reference signatures of neural cells to deconvolve tumor DNA and classify samples into low- or high-neural tumors. High-neural glioblastomas exhibit hypomethylated CpG sites and upregulation of genes associated with synaptic integration. Single-cell transcriptomic analysis reveals high abundance of stem cell-like malignant cells classified as oligodendrocyte precursor and neural precursor cell-like in high-neural glioblastoma. High-neural glioblastoma cells engender neuron-to-glioma synapse formation in vitro and in vivo and show an unfavorable survival after xenografting. In patients, a high-neural signature associates with decreased survival as well as increased functional connectivity and can be detected via DNA analytes and brain-derived neurotrophic factor in plasma. Our study presents an epigenetically defined malignant neural signature in high-grade gliomas that is prognostically relevant.
The CBM experiment will investigate heavy-ion collisions at beam energies from 8 to 45 AGeV at the future accelerator facility FAIR. The goal of the experiment is to study the QCD phase diagram in the vincinity of the QCD critical point. To do so, CBM aims at measuring rare probes among them open charm. In order to identify those rare and short lived particles despite the rich combinatorial background generated in heavy ion collisions, a micro vertex detector (MVD) providing an unprecedented combination of high rate capability and radiation hardness, very light material budget and excellent granularity is required. In this work, we will discuss the concept of this detector and summarize the status of the R&D.
The experimental area 2 (EAR-2) at CERNs neutron time-of-flight facility (n_TOF), which is operational since 2014, is designed and built as a short-distance complement to the experimental area 1 (EAR-1). The Parallel Plate Avalanche Counter (PPAC) monitor experiment was performed to characterize the beam pro↓le and the shape of the neutron 'ux at EAR-2. The prompt γ-flash which is used for calibrating the time-of-flight at EAR-1 is not seen by PPAC at EAR-2, shedding light on the physical origin of this γ-flash.
The (n, γ) cross sections of the gadolinium isotopes play an important role in the study of the stellar nucleosynthesis. In particular, among the isotopes heavier than Fe, 154Gd together with 152Gd have the peculiarity to be mainly produced by the slow capture process, the so-called s-process, since they are shielded against the β-decay chains from the r-process region by their stable samarium isobars. Such a quasi pure s-process origin makes them crucial for testing the robustness of stellar models in galactic chemical evolution (GCE). According to recent models, the 154Gd and 152Gd abundances are expected to be 15-20% lower than the reference un-branched s-process 150Sm isotope. The close correlation between stellar abundances and neutron capture cross sections prompted for an accurate measurement of 154Gd cross section in order to reduce the uncertainty attributable to nuclear physics input and eventually rule out one of the possible causes of present discrepancies between observation and model predictions. To this end, the neutron capture cross section of 154Gd was measured in a wide neutron energy range (from thermal up to some keV) with high resolution in the first experimental area of the neutron time-of-flight facility n_TOF (EAR1) at CERN. In this contribution, after a brief description of the motivation and of the experimental setup used in the measurement, the preliminary results of the 154Gd neutron capture reaction as well as their astrophysical implications are presented.
233U is the fissile nuclei in the Th-U fuel cycle with a particularily small neutron capture cross setion which is on average about one order of magnitude lower than its fission cross section. Hence, the measurement of the 233U(n, γ) cross section relies on a method to accurately distinguish between capture and fission γ-rays. A measurement of the 233U α-ratio has been performed at the n_TOF facility at CERN using a so-called fission tagging setup, coupling n_TOF 's Total Absorption Calorimeter with a novel fission chamber to tag the fission γ-rays. The experimental setup is described and essential parts of the analysis are discussed. Finally, a preliminary 233U α-ratio is presented.
Accurate measurement of the standard 235U(n,f) cross section from thermal to 170 keV neutron energy
(2020)
An accurate measurement of the 235U(n,f) cross section from thermal to 170 keV of neutron energy has recently been performed at n_TOF facility at CERN using 6Li(n,t)4He and 10B(n,α)7Li as references. This measurement has been carried out in order to investigate a possible overestimation of the 235U fission cross section evaluation provided by most recent libraries between 10 and 30 keV. A custom experimental apparatus based on in-beam silicon detectors has been used, and a Monte Carlo simulation in GEANT4 has been employed to characterize the setup and calculate detectors efficiency. The results evidenced the presence of an overestimation in the interval between 9 and 18 keV and the new data may be used to decrease the uncertainty of 235U(n,f) cross section in the keV region.
Accurate neutron capture cross section data for minor actinides (MAs) are required to estimate the production and transmutation rates of MAs in light water reactors with a high burnup, critical fast reactors like Gen-IV systems and other innovative reactor systems such as accelerator driven systems (ADS). Capture reactions of 244Cm open the path for the formation of heavier Cm isotopes and of heavier elements such as Bk and Cf. In addition, 244Cm shares nearly 50% of the total actinide decay heat in irradiated reactor fuels with a high burnup, even after three years of cooling.
Experimental data for this isotope are very scarce due to the difficulties of providing isotopically enriched samples and because the high intrinsic activity of the samples requires the use of neutron facilities with high instantaneous flux. The only two previous experimental data sets for this neutron capture cross section have been obtained in 1969 using a nuclear explosion and, more recently, at J-PARC in 2010. The neutron capture cross sections have been measured at n_TOF with the same samples that the previous experiments in J-PARC. The samples were measured at n_TOF Experimental Area 2 (EAR-2) with three C6D6 detectors and also in Experimental Area 1 (EAR-1) with the Total Absorption Calorimeter (TAC). Preliminary results assessing the quality and limitations of these new experimental datasets are presented for the experiments in both areas. Preliminary yields of both measurements will be compared with evaluated libraries for the first time.
The accuracy on neutron capture cross section of fissile isotopes must be improved for the design of future nuclear systems such as Gen-IV reactors and Accelerator Driven Systems. The High Priority Request List of the Nuclear Energy Agency, which lists the most important nuclear data requirements, includes also the neutron capture cross sections of fissile isotopes such as 233,235U and 239,241Pu. A specific experimental setup has been used at the CERN n_TOF facility for the measurement of the neutron capture cross section of 235U by a set of micromegas fission detectors placed inside a segmented BaF2 Total Absorption Calorimeter.
Study of the photon strength functions and level density in the gamma decay of the n + 234U reaction
(2019)
The accurate calculations of neutron-induced reaction cross sections are relevant for many nuclear applications. The photon strength functions and nuclear level densities are essential inputs for such calculations. These quantities for 235U are studied using the measurement of the gamma de-excitation cascades in radiative capture on 234U with the Total Absorption Calorimeter at n_TOF at CERN. This segmented 4π gamma calorimeter is designed to detect gamma rays emitted from the nucleus with high efficiency. This experiment provides information on gamma multiplicity and gamma spectra that can be compared with numerical simulations. The code DICEBOXC is used to simulate the gamma cascades while GEANT4 is used for the simulation of the interaction of these gammas with the TAC materials. Available models and their parameters are being tested using the present data. Some preliminary results of this ongoing study are presented and discussed.
We have measured the capture cross section of the 155Gd and 157Gd isotopes between 0.025 eV and 1 keV. The capture events were recorded by an array of 4 C6D6 detectors, and the capture yield was deduced exploiting the total energy detection system in combination with the Pulse Height Weighting Techniques. Because of the large cross section around thermal neutron energy, 4 metallic samples of different thickness were used to prevent problems related to self-shielding. The samples were isotopically enriched, with a cross contamination of the other isotope of less than 1.14%. The capture yield was analyzed with an R-Matrix code to describe the cross section in terms of resonance parameters. Near thermal energies, the results are significantly different from evaluations and from previous time-of-flight experiments. The data from the present measurement at n_TOF are publicly available in the experimental nuclear reaction database EXFOR.
Monte Carlo simulations and n-p differential scattering data measured with Proton Recoil Telescopes
(2020)
The neutron-induced fission cross section of 235U, a standard at thermal energy and between 0.15 MeV and 200 MeV, plays a crucial role in nuclear technology applications. The long-standing need of improving cross section data above 20 MeV and the lack of experimental data above 200 MeV motivated a new experimental campaign at the n_TOF facility at CERN. The measurement has been performed in 2018 at the experimental area 1 (EAR1), located at 185 m from the neutron-producing target (the experiment is presented by A. Manna et al. in a contribution to this conference). The 235U(n,f) cross section from 20 MeV up to about 1 GeV has been measured relative to the 1H(n,n)1H reaction, which is considered the primary reference in this energy region. The neutron flux impinging on the 235U sample (a key quantity for determining the fission events) has been obtained by detecting recoil protons originating from n-p scattering in a C2H4 sample. Two Proton Recoil Telescopes (PRT), consisting of several layers of solid-state detectors and fast plastic scintillators, have been located at proton scattering angles of 25.07° and 20.32°, out of the neutron beam. The PRTs exploit the ΔE-E technique for particle identification, a basic requirement for the rejection of charged particles from neutron-induced reactions in carbon. Extensive Monte Carlo simulations were performed to characterize proton transport through the different slabs of silicon and scintillation detectors, to optimize the experimental set-up and to deduce the efficiency of the whole PRT detector. In this work we compare measured data collected with the PRTs with a full Monte Carlo simulation based on the Geant-4 toolkit.
233U is of key importance among the fissile nuclei in the Th-U fuel cycle. A particularity of 233U is its small neutron capture cross-section, which is on average about one order of magnitude lower than the fission cross-section. The accuracy in the measurement of the 233U capture cross-section depends crucially on an efficient capture-fission discrimination, thus a combined set-up of fission and γ-detectors is needed. A measurement of the 233U capture cross-section and capture-to-fission ratio was performed at the CERN n_TOF facility. The Total Absorption Calorimeter (TAC) of n_TOF was employed as γ-detector coupled with a novel compact ionization chamber as fission detector. A brief description of the experimental set-up will be given, and essential parts of the analysis procedure as well as the preliminary response of the set-up to capture are presented and discussed.
Neutron-induced fission cross sections of isotopes involved in the nuclear fuel cycle are vital for the design and safe operation of advanced nuclear systems. Such experimental data can also provide additional constraints for the adjustment of nuclear model parameters used in the evaluation process, resulting in the further development of fission models. In the present work, the 237Np(n,f) cross section was studied at the EAR2 vertical beam-line at CERN's n_TOF facility, over a wide range of neutron energies, from meV to MeV, using the time-of-flight technique and a set-up based on Micromegas detectors, in an attempt to provide accurate experimental data. Preliminary results in the 200 keV – 14 MeV neutron energy range as well as the experimental procedure, including a description of the facility and the data handling and analysis, will be presented.
73Ge(n, γ ) cross sections were measured at the neutron time-of-flight facility n_TOF at CERN up to neutron energies of 300 keV, providing for the first time experimental data above 8 keV. Results indicate that the stellar cross section at kT = 30 keV is 1.5 to 1.7 times higher than most theoretical predictions. The new cross sections result in a substantial decrease of 73Ge produced in stars, which would explain the low isotopic abundance of 73Ge in the solar system.
The design and operation of innovative nuclear systems requires a better knowledge of the capture and fission cross sections of the Pu isotopes. For the case of capture on 242Pu, a reduction of the uncertainty in the fast region down to 8-12% is required. Moreover, aiming at improving the evaluation of the fast energy range in terms of average parameters, the OECD NEA High Priority Request List (HPRL) requests high-resolution capture measurements with improved accuracy below 2 keV. The current uncertainties also affect the thermal point, where previous experiments deviate from each other by 20%. A fruitful collaboration betwen JGU Mainz and HZ Dresden-Rossendorf within the EC CHANDA project resulted in a 242Pu sample consisting of a stack of seven fission-like targets making a total of 95(4) mg of 242Pu electrodeposited on thin (11.5 μm) aluminum backings. This contribution presents the results of a set of measurements of the 242Pu(n, γ) cross section from thermal to 500 keV combining different neutron beams and techniques. The thermal point was determined at the Budapest Research Reactor by means of Neutron Activation Analysis and Prompt Gamma Analysis, and the resolved (1 eV - 4 keV) and unresolved (1 - 500 keV) resonance regions were measured using a set of four Total Energy detectors at the CERN n_TOF-EAR1.
Since the start of its operation in 2001, based on an idea of Prof. Carlo Rubbia [1], the neutron time of-flight facility of CERN, n_TOF, has become one of the most forefront neutron facilities in the world for wide-energy spectrum neutron cross section measurements. Thanks to the combination of excellent neutron energy resolution and high instantaneous neutron flux available in the two experimental areas, the second of which has been constructed in 2014, n_TOF is providing a wealth of new data on neutron-induced reactions of interest for nuclear astrophysics, advanced nuclear technologies and medical applications. The unique features of the facility will continue to be exploited in the future, to perform challenging new measurements addressing the still open issues and long-standing quests in the field of neutron physics. In this document the main characteristics of the n_TOF facility and their relevance for neutron studies in the different areas of research will be outlined, addressing the possible future contribution of n_TOF in the fields of nuclear astrophysics, nuclear technologies and medical applications. In addition, the future perspectives of the facility will be described including the upgrade of the spallation target, the setup of an imaging installation and the construction of a new irradiation area.
The neutron capture cross section of 154Gd was measured from 1 eV to 300 keV in the experimental area located 185 m from the CERN n_TOF neutron spallation source, using a metallic sample of gadolinium, enriched to 67% in 154Gd. The capture measurement, performed with four C6D6 scintillation detectors, has been complemented by a transmission measurement performed at the GELINA time-of-flight facility (JRC-Geel), thus minimising the uncertainty related to sample composition. An accurate Maxwellian averaged capture cross section (MACS) was deduced over the temperature range of interest for s process nucleosynthesis modelling. We report a value of 880(50) mb for the MACS at kT = 30 keV, significantly lower compared to values available in literature. The new adopted 154Gd(n,γ) cross section reduces the discrepancy between observed and calculated solar s-only isotopic abundances predicted by s-process nucleosynthesis models.
We have measured the γ-rays following neutron capture on 240Pu and 244 Cm at the n_TOF facility at CERN with the Total Absorption Calorimeter (TAC) and with C6D6 organic scintillators. The TAC is made of 40 BaF2 crystals operating in coincidence and covering almost the entire solid angle. This allows to obtain information concerning the energy spectra and the multiplicity of the measured capture γ-ray cascades. Additional information is also obtained from the C6D6 detectors. We have analyzed the measured data in order to draw conclusions about the Photon Strength Functions (PSFs) of 241Pu and 245Cm below their neutron separation energies. The analysis has been performed by fitting the PSFs to the experimental results, using the differential evolution method, in order to find neutron capture cascades capable of reproducing at the same time a great variety of deposited energy spectra.
Setup for the measurement of the 235U(n,f) cross section relative to n-p scattering up to 1 GeV
(2020)
The neutron induced fission of 235U is extensively used as a reference for neutron fluence measurements in various applications, ranging from the investigation of the biological effectiveness of high energy neutrons, to the measurement of high energy neutron cross sections of relevance for accelerator driven nuclear systems. Despite its widespread use, no data exist on neutron induced fission of 235U above 200 MeV. The neutron facility n_TOF offers the possibility to improve the situation. The measurement of 235U(n,f) relative to the differential n-p scattering cross-section, was carried out in September 2018 with the aim of providing accurate and precise cross section data in the energy range from 10 MeV up to 1 GeV. In such measurements, Recoil Proton Telescopes (RPTs) are used to measure the neutron flux while the fission events are detected and counted with dedicated detectors. In this paper the measurement campaign and the experimental set-up are illustrated.
The study of neutron-induced reactions on actinides is of considerable importance for the design of advanced nuclear systems and alternative fuel cycles. Specifically, 230Th is produced from the α-decay of 234U as a byproduct of the 232Th/233U fuel cycle, thus the accurate knowledge of its fission cross section is strongly required. However, few experimental datasets exist in literature with large deviations among them, covering the energy range between 0.2 to 25 MeV. In addition, the study of the 230Th(n,f) cross-section is of great interest in the research on the fission process related to the structure of the fission barriers. Previous measurements have revealed a large resonance at En=715 keV and additional fine structures, but with high discrepancies among the cross-section values of these measurements. This contribution presents preliminary results of the 230Th(n,f) cross-section measurements at the CERN n_TOF facility. The high purity targets of the natural, but very rare isotope 230Th, were produced at JRC-Geel in Belgium. The measurements were performed at both experimental areas (EAR-1 and EAR-2) of the n_TOF facility, covering a very broad energy range from thermal up to at least 100 MeV. The experimental setup was based on Micromegas detectors with the 235U(n,f) and 238U(n,f) reaction cross-sections used as reference.
Monte Carlo (MC) simulations are an essential tool to determine fundamental features of a neutron beam, such as the neutron flux or the γ-ray background, that sometimes can not be measured or at least not in every position or energy range. Until recently, the most widely used MC codes in this field had been MCNPX and FLUKA. However, the Geant4 toolkit has also become a competitive code for the transport of neutrons after the development of the native Geant4 format for neutron data libraries, G4NDL. In this context, we present the Geant4 simulations of the neutron spallation target of the n_TOF facility at CERN, done with version 10.1.1 of the toolkit. The first goal was the validation of the intra-nuclear cascade models implemented in the code using, as benchmark, the characteristics of the neutron beam measured at the first experimental area (EAR1), especially the neutron flux and energy distribution, and the time distribution of neutrons of equal kinetic energy, the so-called Resolution Function. The second goal was the development of a Monte Carlo tool aimed to provide useful calculations for both the analysis and planning of the upcoming measurements at the new experimental area (EAR2) of the facility.
Measurement of the 244Cm and 246Cm neutron-induced capture cross sections at the n_TOF facility
(2019)
The neutron capture reactions of the 244Cm and 246Cm isotopes open the path for the formation of heavier Cm isotopes and heavier elements such as Bk and Cf in a nuclear reactor. In addition, both isotopes belong to the minor actinides with a large contribution to the decay heat and to the neutron emission in irradiated fuels. There are only two previous 244Cm and 246Cm capture cross section measurements: one in 1969 using a nuclear explosion [1] and the most recent data measured at J-PARC in 2010 [2]. The data for both isotopes are very scarce due to the difficulties in performing the measurements: high intrinsic activity of the samples and limited facilities capable of providing isotopically enriched samples.
We have measured both neutron capture cross sections at the n_TOF Experimental Area 2 (EAR-2) with three C6 D6 detectors and also at Area 1 (EAR-1) with the TAC. Preliminary results assessing the quality and limitations (back-ground subtraction, measurement technique and counting statistics) of this new experimental datasets are presented and discussed.
New neutron cross section measurements of minor actinides have been performed recently in order to reduce the uncertainties in the evaluated data, which is important for the design of advanced nuclear reactors and, in particular, for determining their performance in the transmutation of nuclear waste. We have measured the 241Am(n,γ) cross section at the n_TOF facility between 0.2 eV and 10 keV with a BaF2 Total Absorption Calorimeter, and the analysis of the measurement has been recently concluded. Our results are in reasonable agreement below 20 eV with the ones published by C. Lampoudis et al. in 2013, who reported a 22% larger capture cross section up to 110 eV compared to experimental and evaluated data published before. Our results also indicate that the 241Am(n,γ) cross section is underestimated in the present evaluated libraries between 20 eV and 2 keV by 25%, on average, and up to 35% for certain evaluations and energy ranges.
An important experimental program on Nuclear Astrophysics is being carried out at the n_TOF since several years, in order to address the still open issues in stellar and primordial nucleosynthesis. Several neutron capture reactions relevant to s-process nucleosynthesis have been measured so far, some of which on important branching point radioisotopes. Furthermore, the construction of a second experimental area has recently opened the way to challenging measurements of (n, charged particle) reactions on isotopes of short half-life. The Nuclear Astrophysics program of the n_TOF Collaboration is here described, with emphasis on recent results relevant for stellar nucleosynthesis, stellar neutron sources and primordial nucleosynthesis.
Although the 12C(n,p)12B and 12C(n,d)11B reactions are of interest in several fields of basic and applied Nuclear Physics the present knowledge of these two cross-sections is far from being accurate and reliable, with both evaluations and data showing sizable discrepancies. As part of the challenging n_TOF program on (n,cp) nuclear reactions study, the energy differential cross-sections of the 12C(n,p)12B and 12C(n,d)11 B reactions have been measured at CERN from the reaction thresholds up to 30 MeV neutron energy. Both measurements have been recently performed at the long flight-path (185 m) experimental area of the n_TOF facility at CERN using a pure (99.95%) rigid graphite target and two silicon telescopes. In this paper an overview of the experiment is presented together with a few preliminary results.
The neutron capture cross section of some unstable nuclei is especially relevant for s-process nucleosynthesis studies. This magnitude is crucial to determine the local abundance pattern, which can yield valuable information of the s-process stellar environment. In this work we describe the neutron capture (n,γ) measurement on two of these nuclei of interest, 204Tl and 171Tm, from target production to the final measurement, performed successfully at the n_TOF facility at CERN in 2014 and 2015. Preliminary results on the ongoing experimental data analysis will also be shown. These results include the first ever experimental observation of capture resonances for these two nuclei.
The slow neutron capture process (s-process) is responsible for producing about half of the elemental abundances heavier than iron in the universe. Neutron capture cross sections on stable isotopes are a key nuclear physics input for s-process studies. The 72Ge(n, γ) cross section has an important influence on production of isotopes between Ge and Zr during s-process in massive stars and therefore experimental data are urgently required. 72Ge(n, γ) was measured at the neutron time-of-flight facility n_TOF (CERN) for the first time at stellar energies. The measurement was performed using an enriched 72GeO2 sample at a flight path of 185m with a set of liquid scintillation detectors (C6D6). The motivation, experiment and current status of the data analysis are reported.
The aim of this work is to provide a precise and accurate measurement of the 238U(n,γ) reaction cross section in the energy region from 1 eV to 700 keV. This reaction is of fundamental importance for the design calculations of nuclear reactors, governing the behavior of the reactor core. In particular, fast reactors, which are experiencing a growing interest for their ability to burn radioactive waste, operate in the high energy region of the neutron spectrum. In this energy region most recent evaluations disagree due to inconsistencies in the existing measurements of up to 15%. In addition, the assessment of nuclear data uncertainty performed for innovative reactor systems shows that the uncertainty in the radiative capture cross section of 238U should be further reduced to 1–3% in the energy region from 20 eV to 25 keV. To this purpose, addressed by the Nuclear Energy Agency as a priority nuclear data need, complementary experiments, one at the GELINA and two at the n_TOF facility, were proposed and carried out within the 7th Framework Project ANDES of the European Commission. The results of one of these 238U(n,γ) measurements performed at the n_TOF CERN facility are presented in this work. The γ-ray cascade following the radiative neutron capture has been detected exploiting a setup of two C6D6 liquid scintillators. Resonance parameters obtained from this work are on average in excellent agreement with the ones reported in evaluated libraries. In the unresolved resonance region, this work yields a cross section in agreement with evaluated libraries up to 80 keV, while for higher energies our results are significantly higher.
Neutron-induced reaction cross sections are important for a wide variety of research fields ranging from the study of nuclear level densities, nucleosynthesis to applications of nuclear technology like design, and criticality and safety assessment of existing and future nuclear reactors, radiation dosimetry, medical applications, nuclear waste transmutation, accelerator-driven systems and fuel cycle investigations. Simulations and calculations of nuclear technology applications largely rely on evaluated nuclear data libraries. The evaluations in these libraries are based both on experimental data and theoretical models. CERN’s neutron time-of-flight facility n_TOF has produced a considerable amount of experimental data since it has become fully operational with the start of its scientific measurement programme in 2001. While for a long period a single measurement station (EAR1) located at 185 m from the neutron production target was available, the construction of a second beam line at 20 m (EAR2) in 2014 has substantially increased the measurement capabilities of the facility. An outline of the experimental nuclear data activities at n_TOF will be presented.
The 33S(n,α)30Si cross section measurement, using 10B(n,α) as reference, at the n_TOF Experimental Area 2 (EAR2) facility at CERN is presented. Data from 0.01 eV to 100 keV are provided and, for the first time, the cross section is measured in the range from 0.01 eV to 10 keV. These data may be used for a future evaluation of the cross section because present evaluations exhibit large discrepancies. The 33S(n,α)30Si reaction is of interest in medical physics because of its possible use as a cooperative target to boron in Neutron Capture Therapy (NCT).
The spent fuel of current nuclear reactors contains fissile plutonium isotopes that can be combined with 238U to make mixed oxide (MOX) fuel. In this way the Pu from spent fuel is used in a new reactor cycle, contributing to the long-term sustainability of nuclear energy. The use of MOX fuels in thermal and fast reactors requires accurate capture and fission cross sections. For the particular case of 242Pu, the previous neutron capture cross section measurements were made in the 70's, providing an uncertainty of about 35% in the keV region. In this context, the Nuclear Energy Agency recommends in its “High Priority Request List” and its report WPEC-26 that the capture cross section of 242Pu should be measured with an accuracy of at least 7–12% in the neutron energy range between 500 eV and 500 keV. This work presents a brief description of the measurement performed at n_TOF-EAR1, the data reduction process and the first ToF capture measurement on this isotope in the last 40 years, providing preliminary individual resonance parameters beyond the current energy limits in the evaluations, as well as a preliminary set of average resonance parameters.
The Cosmological Lithium Problem refers to the large discrepancy between the abundance of primordial 7Li predicted by the standard theory of Big Bang Nucleosynthesis and the value inferred from the so-called “Spite plateau” in halo stars. A possible explanation for this longstanding puzzle in Nuclear Astrophysics is related to the incorrect estimation of the destruction rate of 7Be, which is responsible for the production of 95% of primordial Lithium. While charged-particle induced reactions have mostly been ruled out, data on the 7Be(n,α) and 7Be(n,p) reactions are scarce or completely missing, so that a large uncertainty still affects the abundance of 7Li predicted by the standard theory of Big Bang Nucleosynthesis. Both reactions have been measured at the n_TOF facility at CERN, providing for the first time data in a wide neutron energy range.
New results are presented of the 234U neutron-induced fission cross section, obtained with high accuracy in the resonance region by means of two methods using the 235U(n,f) as reference. The recent evaluation of the 235U(n,f) obtained with SAMMY by L. C. Leal et al. (these Proceedings), based on previous n_TOF data [1], has been used to calculate the 234U(n,f) cross section through the 234U/235U ratio, being here compared with the results obtained by using the n_TOF neutron flux.
The CERN n_TOF neutron beam facility is characterized by a very high instantaneous neutron flux, excellent TOF resolution at the 185 m long flight path (EAR-1), low intrinsic background and coverage of a wide range of neutron energies, from thermal to a few GeV. These characteristics provide a unique possibility to perform high-accuracy measurements of neutron-induced reaction cross-sections and angular distributions of interest for fundamental and applied Nuclear Physics. Since 2001, the n_TOF Collaboration has collected a wealth of high quality nuclear data relevant for nuclear astrophysics, nuclear reactor technology, nuclear medicine, etc. The overall efficiency of the experimental program and the range of possible measurements has been expanded with the construction of a second experimental area (EAR-2), located 20 m on the vertical of the n_TOF spallation target. This upgrade, which benefits from a neutron flux 30 times higher than in EAR-1, provides a substantial extension in measurement capabilities, opening the possibility to collect data on neutron cross-section of isotopes with short half-lives or available in very small amounts. This contribution will outline the main characteristics of the n_TOF facility, with special emphasis on the new experimental area. In particular, we will discuss the innovative features of the EAR-2 neutron beam that make possible to perform very challenging measurements on short-lived radioisotopes or sub-mg samples, out of reach up to now at other neutron facilities around the world. Finally, the future perspectives of the facility will be presented.
High precision measurement of the radiative capture cross section of 238U at the n_TOF CERN facility
(2017)
The importance of improving the accuracy on the capture cross-section of 238U has been addressed by the Nuclear Energy Agency, since its uncertainty significantly affects the uncertainties of key design parameters for both fast and thermal nuclear reactors. Within the 7th framework programme ANDES of the European Commission three different measurements have been carried out with the aim of providing the 238U(n,γ) cross-section with an accuracy which varies from 1 to 5%, depending on the energy range. Hereby the final results of the measurement performed at the n_TOF CERN facility in a wide energy range from 1 eV to 700 keV will be presented.
The 236U isotope plays an important role in nuclear systems, both for future and currently operating ones. The actual knowledge of the capture reaction of this isotope is satisfactory in the thermal region, but it is considered insufficient for Fast Reactor and ADS applications. For this reason the 236U(n, γ) reaction cross-section has been measured for the first time in the whole energy region from thermal energy up to 1 MeV at the n_TOF facility with two different detection systems: an array of C6D6 detectors, employing the total energy deposited method, and a FX1 total absorption calorimeter (TAC), made of 40 BaF2 crystals. The two n_TOF data sets agree with each other within the statistical uncertainty in the Resolved Resonance Region up to 800 eV, while sizable differences (up to ≃ 20%) are found relative to the current evaluated data libraries. Moreover two new resonances have been found in the n_TOF data. In the Unresolved Resonance Region up to 200 keV, the n_TOF results show a reasonable agreement with previous measurements and evaluated data.
i-TED is an innovative detection system which exploits Compton imaging techniques to achieve a superior signal-to-background ratio in (n,γ) cross-section measurements using time-of-flight technique. This work presents the first experimental validation of the i-TED apparatus for high-resolution time-of-flight experiments and demonstrates for the first time the concept proposed for background rejection. To this aim both 197Au(n,γ) and 56Fe(n,γ) reactions were measured at CERN n\_TOF using an i-TED demonstrator based on only three position-sensitive detectors. Two \cds detectors were also used to benchmark the performance of i-TED. The i-TED prototype built for this study shows a factor of ∼3 higher detection sensitivity than state-of-the-art \cds detectors in the ∼10~keV neutron energy range of astrophysical interest. This paper explores also the perspectives of further enhancement in performance attainable with the final i-TED array consisting of twenty position-sensitive detectors and new analysis methodologies based on Machine-Learning techniques.
The idea of slow-neutron capture nucleosynthesis formulated in 1957 triggered a tremendous experimental effort in different laboratories worldwide to measure the relevant nuclear physics input quantities, namely (n,γ) cross sections over the stellar temperature range (from few eV up to several hundred keV) for most of the isotopes involved from Fe up to Bi. A brief historical review focused on total energy detectors will be presented to illustrate how, advances in instrumentation have led, over the years, to the assessment and discovery of many new aspects of s-process nucleosynthesis and to the progressive refinement of theoretical models of stellar evolution. A summary will be presented on current efforts to develop new detection concepts, such as the Total-Energy Detector with γ-ray imaging capability (i-TED). The latter is based on the simultaneous combination of Compton imaging with neutron time-of-flight (TOF) techniques, in order to achieve a superior level of sensitivity and selectivity in the measurement of stellar neutron capture rates.
The neutron sensitivity of the C6D6 detector setup used at n_TOF facility for capture measurements has been studied by means of detailed GEANT4 simulations. A realistic software replica of the entire n_TOF experimental hall, including the neutron beam line, sample, detector supports and the walls of the experimental area has been implemented in the simulations. The simulations have been analyzed in the same manner as experimental data, in particular by applying the Pulse Height Weighting Technique. The simulations have been validated against a measurement of the neutron background performed with a natC sample, showing an excellent agreement above 1 keV. At lower energies, an additional component in the measured natC yield has been discovered, which prevents the use of natC data for neutron background estimates at neutron energies below a few hundred eV. The origin and time structure of the neutron background have been derived from the simulations. Examples of the neutron background for two different samples are demonstrating the important role of accurate simulations of the neutron background in capture cross-section measurements.
he study of the resonant structures in neutron-nucleus cross-sections, and therefore of the compound-nucleus reaction mechanism, requires spectroscopic measurements to determine with high accuracy the energy of the neutron interacting with the material under study.
To this purpose, the neutron time-of-flight facility n_TOF has been operating since 2001 at CERN. Its characteristics, such as the high intensity instantaneous neutron flux, the wide energy range from thermal to few GeV, and the very good energy resolution, are perfectly suited to perform high-quality measurements of neutron-induced reaction cross sections. The precise and accurate knowledge of these cross sections plays a fundamental role in nuclear technologies, nuclear astrophysics and nuclear physics.
Two different measuring stations are available at the n_TOF facility, called EAR1 and EAR2, with different characteristics of intensity of the neutron flux and energy resolution. These experimental areas, combined with advanced detection systems lead to a great flexibility in performing challenging measurement of high precision and accuracy, and allow the investigation isotopes with very low cross sections, or available only in small quantities, or with very high specific activity.
The characteristics and performances of the two experimental areas of the n_TOF facility will be presented, together with the most important measurements performed to date and their physics case. In addition, the significant upcoming measurements will be introduced.
Fission program at n_TOF
(2019)
Since its start in 2001 the n_TOF collaboration developed a measurement program on fission, in view of advanced fuels in new generation reactors. A special effort was made on measurement of cross sections of actinides, exploiting the peculiarity of the n_TOF neutron beam which spans a huge energy domain, from the thermal region up to GeV. Moreover fission fragment angular distributions have also been measured. An overview of the cross section results achieved with different detectors is presented, including a discussion of the 237Np case where discrepancies showed up between different detector systems. The results on the anisotropy of the fission fragments and its implication on the mechanism of neutron absorption, and in applications, are also shown.
The accurate knowledge of the neutron-induced fission cross-sections of actinides and other isotopes involved in the nuclear fuel cycle is essential for the design of advanced nuclear systems, such as Generation-IV nuclear reactors. Such experimental data can also provide the necessary feedback for the adjustment of nuclear model parameters used in the evaluation process, resulting in the further development of nuclear fission models. In the present work, the 240Pu(n,f) cross-section was measured at CERN's n_TOF facility relative to the well-known 235U(n,f) cross section, over a wide range of neutron energies, from meV to almost MeV, using the time-of-flight technique and a set-up based on Micromegas detectors. This measurement was the first experiment to be performed at n_TOF's new experimental area (EAR-2), which offers a significantly higher neutron flux compared to the already existing experimental area (EAR-1). Preliminary results as well as the experimental procedure, including a description of the facility and the data handling and analysis, are presented.
Neutron-induced fission cross sections of 238U and 235U are used as standards in the fast neutron region up to 200 MeV. A high accuracy of the standards is relevant to experimentally determine other neutron reaction cross sections. Therefore, the detection effciency should be corrected by using the angular distribution of the fission fragments (FFAD), which are barely known above 20 MeV. In addition, the angular distribution of the fragments produced in the fission of highly excited and deformed nuclei is an important observable to investigate the nuclear fission process.
In order to measure the FFAD of neutron-induced reactions, a fission detection setup based on parallel-plate avalanche counters (PPACs) has been developed and successfully used at the CERN-n_TOF facility. In this work, we present the preliminary results on the analysis of new 235U(n,f) and 238U(n,f) data in the extended energy range up to 200 MeV compared to the existing experimental data.
The neutron capture cross section of 58Ni was measured at the neutron time of flight facility n_TOF at CERN, from 27 meV to 400 keV neutron energy. Special care has been taken to identify all the possible sources of background, with the so-called neutron background obtained for the first time using high-precision GEANT4 simulations. The energy range up to 122 keV was treated as the resolved resonance region, where 51 resonances were identified and analyzed by a multilevel R-matrix code SAMMY. Above 122 keV the code SESH was used in analyzing the unresolved resonance region of the capture yield. Maxwellian averaged cross sections were calculated in the temperature range of kT = 5 – 100 keV, and their astrophysical implications were investigated.
The 14N(n,p)14C reaction is of interest in neutron capture therapy, where nitrogen-related dose is the main component due to low-energy neutrons, and in astrophysics, where 14N acts as a neutron poison in the s-process. Several discrepancies remain between the existing data obtained in partial energy ranges: thermal energy, keV region and resonance region. Purpose: Measuring the 14N(n,p)14C cross section from thermal to the resonance region in a single measurement for the first time, including characterization of the first resonances, and providing calculations of Maxwellian averaged cross sections (MACS). Method: Time-of-flight technique. Experimental Area 2 (EAR-2) of the neutron time-of-flight (n_TOF) facility at CERN. 10B(n,α)7Li and 235U(n,f) reactions as references. Two detection systems running simultaneously, one on-beam and another off-beam. Description of the resonances with the R-matrix code sammy. Results: The cross section has been measured from sub-thermal energy to 800 keV resolving the two first resonances (at 492.7 and 644 keV). A thermal cross-section (1.809±0.045 b) lower than the two most recent measurements by slightly more than one standard deviation, but in line with the ENDF/B-VIII.0 and JEFF-3.3 evaluations has been obtained. A 1/v energy dependence of the cross section has been confirmed up to tens of keV neutron energy. The low energy tail of the first resonance at 492.7 keV is lower than suggested by evaluated values, while the overall resonance strength agrees with evaluations. Conclusions: Our measurement has allowed to determine the 14N(n,p) cross-section over a wide energy range for the first time. We have obtained cross-sections with high accuracy (2.5 %) from sub-thermal energy to 800 keV and used these data to calculate the MACS for kT = 5 to kT = 100 keV.
New measurements of the 7Be(n,α)4He and 7Be(n,p)7Li reaction cross sections from thermal to keV neutron energies have been recently performed at CERN/n_TOF. Based on the new experimental results, astrophysical reaction rates have been derived for both reactions, including a proper evaluation of their uncertainties in the thermal energy range of interest for big bang nucleosynthesis studies. The new estimate of the 7Be destruction rate, based on these new results, yields a decrease of the predicted cosmological 7Li abundance insufficient to provide a viable solution to the cosmological lithium problem.
Feasibility, design and sensitivity studies on innovative nuclear reactors that could address the issue of nuclear waste transmutation using fuels enriched in minor actinides, require high accuracy cross section data for a variety of neutron-induced reactions from thermal energies to several tens of MeV. The isotope 241Am (T1/2= 433 years) is present in high-level nuclear waste (HLW), representing about 1.8 % of the actinide mass in spent PWR UOx fuel. Its importance increases with cooling time due to additional production from the β-decay of 241Pu with a half-life of 14.3 years. The production rate of 241 Am in conventional reactors, including its further accumulation through the decay of 241Pu and its destruction through transmutation/incineration are very important parameters for the design of any recycling solution. In the present work, the 241 Am(n,f) reaction cross-section was measured using Micromegas detectors at the Experimental Area 2 of the n_TOF facility at CERN. For the measurement, the 235U(n,f) and 238U(n,f) reference reactions were used for the determination of the neutron flux. In the present work an overview of the experimental setup and the adopted data analysis techniques is given along with preliminary results.
Neutron capture on 241Am plays an important role in the nuclear energy production and also provides valuable information for the improvement of nuclear models and the statistical interpretation of the nuclear properties. A new experiment to measure the 241Am(n, γ) cross section in the thermal region and the first few resonances below 10 eV has been carried out at EAR2 of the n_TOF facility at CERN. Three neutron-insensitive C6D6 detectors have been used to measure the neutron-capture gamma cascade as a function of the neutron time of flight, and then deduce the neutron capture yield. Preliminary results will be presented and compared with previously obtained results at the same facility in EAR1. In EAR1 the gamma-ray background at thermal energies was about 90% of the signal while in EAR2 is up to a 25 factor much more favorable signal to noise ratio. We also extended the low energy limit down to subthermal energies. This measurement will allow a comparison with neutron capture measurements conducted at reactors and using a different experimental technique.
Im Zeitraum 1999 bis 2003 wurden im Harz 83 gezüchtete Auerhühner besendert und nach der Auswilderung telemetrisch überwacht. Das Hauptziel war dabei, über Daten zu Überlebenschancen, Raum- und Habitatnutzung und zur Ernährung der Auswilderungstiere eine effektive Erfolgskontrolle zu ermöglichen und Optimierungsvorschläge für zukünftige Auswilderungsbestrebungen geben zu können. Von den mit Sendern ausgestatteten Tieren überlebten ca. 23 % (n = 18) bis zum Sender- oder Kontaktverlust. Die mediane Überlebensdauer betrug 13 Tage, wobei Hennen länger überlebten (18 Tage) als Hähne (12 Tage). Die höchsten Verluste (79 %, n = 48) traten innerhalb der ersten vier Wochen nach der Ausbringung auf. Von 61 registrierten Totfunden entfielen 62 % auf den Fuchs, 10 % auf den Habicht und 7 % auf den Luchs. Neben Totfunden mit unklarer Ursache, verendeten einzelne Tiere im Verkehr, aufgrund von Unterernährung oder wurden von Hunden getötet. Die Hauptgründe für die hohen Verluste unter den ausgewilderten Auerhühnern sind in physiologischen und ethologischen Defiziten aufgrund der Gehegezucht zu suchen. Hier seien insbesondere mangelhafte Feindkenntnis, und die wahrscheinlich unzureichende Anpassung an die Freilandnahrung zu nennen. Zudem waren 5 % der Verluste auf angelockte Prädatoren im Umfeld der Eingewöhnungsvoliere zurückzuführen. Die Auswilderungstiere nutzten Aktionsräume (Suchgebiete) zwischen unter einem bis zu 17.100 ha, wobei die Mehrzahl der Aktionsräume (77 %) bis zu 1.000 ha umfasste. Die ermittelten Aktionsraumgröße und auch die maximale Entfernung zum Auswilderungsort nahmen mit der Ortungsdauer zu. Das mitunter weiträumige Verstreichen der Auswilderungstiere könnte auf die allgemein starke Dispersion juveniler Auerhühner, aber auch auf vom Habitat her ungeeignete Auswilderungsorte zurückzuführen sein. Innerhalb der Aktionsräume etablierten die Vögel räumlich kleinere Nutzungszentren die zumeist bis zum Totfund oder Senderverlust frequentiert blieben. Die Größe der Nutzungszentren (n = 17) variierte zwischen 0,5 ha und bis zu 327 ha. Täglich legten die Vögel in ca. 70 % aller Fälle nicht mehr als 500 m zurück. Etwa 67 % aller Ortungen entfielen auf einen 3-km-Radius um den Aussetzungsort. Maximalwerte verwiesen auf Distanzen bis ca. 22 km (W). Methodisch ist aufgrund der Ergebnisse die Auswilderung direkt aus den Transportkisten ohne Akklimatisierung in Eingewöhnungsvolieren zu empfehlen. So ließen sich zusätzliche Verluste am Auswilderungspunkt vermeiden, und zudem bliebe man flexibel in der Wahl des Auswilderungsortes. Weitere Optimierungsmaßnahmen in der Zucht und Auswilderungsmethodik sind unerlässlich (z. B. frühzeitig intensivierte artgerechte Ernährung, Trainingsprogramme, angemessene Krankheitsprophylaxe), ohne deren erfolgreiche Umsetzung die weitere Auswilderung von Gehegetieren nicht weiter verantwortbar bleibt.
In den hier skizzierten Kontext kollektiver Selbstverständigung zeitgenössischer Kulturdiagnostiker fügt sich auch das Mem-Konzept ein, dessen Urheber jedoch nicht im Entferntesten daran dachte, einen Beitrag zur Lösung kulturanthropologischer Grundprobleme zu leisten. Der englische Evolutionsbiologe Richard Dawkins, der den Neologismus "Mem" eingeführt hat, ist in einem ganz anderen Kontext beheimatet und verfolgt ganz andere Intentionen. Es war vor allem der Gedanke der Replikation, der Dawkins so fasziniert hat, dass er die Frage stellte, ob nicht auch die kulturelle Evolution als ein autoreproduktiver Replikationsprozess begriffen werden könnte. Aber wer oder was sollte sich replizieren? Ließ sich eine Struktureinheit mit einem variablen Komplexitätsgrad annehmen, die analog zum Gen als ein Replikator fungieren könnte? Die Antwort auf diese Frage war die Mem-Hypothese. Gene stellen als biologische Erbeinheiten eine Art von Grundbausteinen der belebten Materie dar. Daran anknüpfend führte Dawkins als Analogon zum Gen die Größe ein, die er Mem nannte. Er definierte Mem als die Einheit kultureller Vererbung, die sich dadurch auszeichnet, dass sie Kopien von sich herstellen kann. Aufgrund eines solchen Wirkungsvermögens können Meme als Quasiakteure der Replikation betrachtet werden, sie seien die Replikatoren, die die kulturelle Evolution in Gang hielten.
Der Altphilologe Johannes Stroux hat unmittelbar nach Kriegsende bemerkenswerte Anstrengungen unternommen, die Altertumswissenschaft aus ihrer Isoliertheit herauszuführen und in die von Künstlern, Wissenschaftlern, Intellektuellen unterschiedlicher Couleur, von Politikern, Gewerkschaftlern, Kirchenleuten angestrebte "Erneuerung der deutschen Kultur" zu integrieren. Stroux reagierte damit auf die Resignation vieler Altertumswissenschaftler, die sich in die Defensive gedrängt fühlten.
Wir haben das Feld der sozialen Situationen sondiert und die spektatorische Situation als eine spezifische Zeichensituation und Verkehrsform erörtert. Darüber hinaus sind problemgeschichtliche Aspekte der Figur des Zuschauers zur Sprache gekommen; gleichsam als Bestandteil konzeptioneller Vorarbeiten zur konkreten kultursemiotischen Untersuchung historischer Modelle von Spectatorship in ihrer funktionellen Typenvielfalt.
Von 1999 bis 2003 kamen im Nationalpark Harz (Niedersachsen) 83 gezüchtete juvenile Auerhühner frei, die zuvor mit Sendern ausgestattet und anschließend regelmäßig geortet wurden. Es wurde geprüft, ob die ausgewilderten Auerhühner ein ähnliches Nahrungsspektrum haben wie Wildvögel. Der Hintergrund dabei sind Erkenntnisse darüber, dass gezüchtete Hühnervögel aufgrund der hochverdaulichen und nährstoffreichen Volierennahrung ernährungsphysiologisch schlecht auf ein Leben im Freiland vorbereitet sind. Es wurden 109 Losungsproben gesammelt und die darin enthaltenen Nahrungsreste mikroskopisch aufbereitet, mit Hilfe einer Vergleichssammlung und der arttypischen Epidermiskennzeichen bestimmt und ihre Anteile geschätzt. Als Hauptnahrungskomponenten der im Herbst ausgewilderten Auerhühner sind für die Monate Oktober bis Februar Fichte (34 %), Heidelbeere (26 %) und Kräuter (20 %) zu nennen. Bei den im Frühjahr frei gelassenen Vögeln dominierten Fichte (56 %) und Gräser (20 %). Der Koniferenanteil bleibt jedoch in den Herbst- und insbesondere in den Wintermonaten hinter den Erwartungen zurück, besteht doch die Ernährung wild lebender Auerhühner im Winter nahezu ausschließlich aus Nadeln. Betrachtet man die drei Auswilderungstermine im Herbst (1999, 2002 und 2003) separat, fällt auf, dass der Fichtenanteil in den Monaten Dezember bis Februar mit minimal 18 % bis maximal 64 % auf äußerst niedrigem Niveau schwankt. Eine Umstellung auf die Winternadelnahrung, wie sie bei Wildvögeln bereits in den Herbstmonaten erfolgt, konnte nur anhand von Einzelproben nachgewiesen werden und verlief deutlich zeitversetzt (Februar). Günstige Witterungsbedingungen bis weit in die Wintermonate hinein (Verfügbarkeit der Krautschicht als Nahrungsquelle) und ernährungsphysiologische Defizite (geringe Verdauungsleistung) werden als Ursachen dafür diskutiert. Da das Hauptziel von solchen Artenschutzprogrammen die Ausbringung überlebensfähiger Individuen sein muss, ist zukünftig verstärkt darauf zu achten, dass die dafür notwendigen Grundlagen garantiert sind. Eine Voraussetzung dabei ist die Entwicklung umsetzbarer Fütterungsprogramme für Auswilderungszuchten und deren erfolgreiche Etablierung. Gelingen diese nicht, ist der weitere Einsatz von Zuchtvögeln für Ansiedlungsprojekte nicht zu befürworten.
Bei den im Rahmen des Forschungsverbundes erfolgten faunistischen Untersuchungen stand die Charakterisierung der unterschiedlichen, vor allem aber der wertvollen Biotoptypen der Braunkohlenfolgelandschaft mit Hilfe der dort lebenden Tierarten bzw. Artengemeinschaften im Vordergrund. Es wurden Tiergruppen bearbeitet, die zum einen ein hohes indikatorisches Potential besitzen, zum anderen unterschiedliche ökologische Hierachieebenen repräsentieren. Eine Auswertung der Ergebnisse erfolgte zumeist auf der Ebene der Biotoptypengruppen (siehe Heyde; Jakob; Köck; Reuter im gleichen Heft).
Die 'Weimarer Beiträge' haben in der Wissenschaftsgeschichte der DDR-Ästhetik eine wichtige Rolle gespielt. Sie waren Wegbegleiter einer hochschul- und wissenschaftspolitischen Innovation, die ebenso große Chancen wie Risiken barg. Mitte der sechziger Jahre setzte die Abteilung Ästhetik am Institut für Philosophie der Berliner Humboldt-Universität Stellung und Charakter der Ästhetik als philosophischer Disziplin aufs Spiel, ohne daß die Beteiligten wissen konnten, ob dies möglicherweise der erste Schritt zur allmählichen Selbstabschaffung war. Im Jahre 1965 wurde nach einiger Vorbereitung spruchreif, was sogleich unter dem Schlagwort "Auszug der Ästhetik aus der Philosophie " kursierte. Die Ästhetik machte sich (institutionell) selbständig und riskierte fortan die Marginalisierung im Feld der philosophischen Diskurse. Ein ähnlicher Vorgang vollzog sich in Leipzig. Zum Wintersemester 1963/64 wurde in Leipzig und Berlin ein neuer Studiengang Kulturwissenschaft eingerichtet, der bei den Studienbewerbern einen unerwartet starken Zulauf fand.
Der Studiengang Kulturwissenschaft verband eine philosophische Grundausbildung mit einer für alle Studierenden verbindlichen Spezialisierung (Ästhetik oder Kulturtheorie). Zugleich war ein einzelwissenschaftliches Nebenfach zu absolvieren, in Berlin zunächst beschränkt auf eine Kunstwissenschaft oder Philologie. Der Ansturm der Studenten war so groß, daß die kleinen Ästhetikabteilungen an den philosophischen Instituten hoffnungslos überfordert waren. Die Gründung selbständiger Institute für Ästhetik war nicht nur eine theoretische, sondern eine eminent praktische Frage. Das Netz der betrieblichen und kommunalen Kultureinrichtungen breitete sich damals über das ganze Land aus und war auf qualifizierte und kreative "Kulturarbeiter" angewiesen.
Wer Karla Kliches alltägliches Wirken als Redakteurin der Weimarer Beiträge längere Zeit beobachten konnte, den hat vor allem eine Haltung beeindruckt: diese Achtsamkeit gegenüber dem anderen, dieses Ernstnehmen von Autoren auch im kritischen Umgang mit ihnen, die Bewertung wissenschaftlicher Prosa nicht nur nach dispositionellen, sondern auch nach stilistischen Qualitäten, diese Wertschätzung neuer Gedanken - man muss es über Jahre hin erlebt haben, um all dies als etwas Seltenes und Kostbares zu schätzen zu wissen. Karla Kliches Umgangstugenden haben den Geist dieser Zeitschrift mitgeprägt
Immunomodulatory properties and molecular effects in inflammatory diseases of low-dose X-irradiation
(2012)
Inflammatory diseases are the result of complex and pathologically unbalanced multicellular interactions. For decades, low-dose X-irradiation therapy (LD-RT) has been clinically documented to exert an anti-inflammatory effect on benign diseases and chronic degenerative disorders. By contrast, experimental studies to confirm the effectiveness and to reveal underlying cellular and molecular mechanisms are still at their early stages. During the last decade, however, the modulation of a multitude of immunological processes by LD-RT has been explored in vitro and in vivo. These include leukocyte/endothelial cell adhesion, adhesion molecule and cytokine/chemokine expression, apoptosis induction, and mononuclear/polymorphonuclear cell metabolism and activity. Interestingly, these mechanisms display comparable dose dependences and dose-effect relationships with a maximum effect in the range between 0.3 and 0.7 Gy, already empirically identified to be most effective in the clinical routine. This review summarizes data and models exploring the mechanisms underlying the immunomodulatory properties of LD-RT that may serve as a prerequisite for further systematic analyses to optimize low-dose irradiation procedures in future clinical practice.
Background: In a previous analysis (Int J Radiat Oncol Biol Phys 70:828-835,2010), we assessed whether an adjuvant supplementation with selenium (Se) improves Se status and reduces the radiation-induced side-effects of patients treated by adjuvant radiotherapy (RT) for cervical and uterine cancer. Now, a potential relation between the planning target volume (PTV) of the RT and the Se effect concerning radiation induced diarrhoea was evaluated in detail.
Methods: Whole blood Se concentrations had been measured in patients with cervical (n=11) and uterine cancer (n=70) after surgical treatment, during, and at the end of RT. Patients with initial Se concentrations of less than 84 μg/l were categorized as Se-deficient and randomized before RT to receive Se (as sodium selenite) per os on the days of RT, or to receive no supplement during RT. Diarrhoea was graded according to the Common Toxicity Criteria system (CTC, Version 2a). The evaluation of the PTV of the RT was ascertained with the help of a specialised computer-assisted treatment planning software used for radiation planning procedure.
Results: A total of 81 patients had been randomized for the initial supplementation study, 39 of which received Se [selenium group, SeG] and 42 serving as controls [control group, CG]. Mean Se levels did not differ between SeG and CG upon study initiation, but were significantly higher in the SeG compared to the CG at the end of RT. The actuarial incidence of at least CTC 2 radiation induced diarrhoea in the SeG was 20.5% compared to 44.5% in the CG (p=0.04). The median PTV in both groups was 1302 ml (916–4608). With a PTV of <= 1302 ml (n=41) the actuarial incidence of at least CTC 2 diarrhoea in the SeG was 22.3% (4 of 18 patients) compared to 34.8% (8 of 23 patients) in the CG (p=0.50). In patients with a PTV of > 1302 ml (n=40) the actuarial incidence of at least CTC 2 diarrhoea in the SeG was 19.1% (4 of 21 patients) versus 52.6% (10 of 19 patients) in the CG (p=0.046).
Conclusions: Se supplementation during RT was effective to improve blood Se status in Se-deficient cervical and uterine cancer patients, and reduces episodes and severity of RT-induced diarrhoea. This effect was most pronounced and significant in patients with large PTV (> 1302 ml).
The huge neutron fluxes offer the possibility to use research reactors to produce isotopes of interest, which can be investigated afterwards. An example is the half-lives of long-lived isotopes like 129I. A direct usage of reactor neutrons in the astrophysical energy regime is only possible, if the corresponding ions are not at rest in the laboratory frame. The combination of an ion storage ring with a reactor and a neutron guide could open the path to direct measurements of neutron-induced cross sections on short-lived radioactive isotopes in the astrophysically interesting energy regime.
The immune suppressive microenvironment affects efficacy of radio-immunotherapy in brain metastasis
(2021)
The tumor microenvironment in brain metastases is characterized by high myeloid cell content associated with immune suppressive and cancer-permissive functions. Moreover, brain metastases induce the recruitment of lymphocytes. Despite their presence, T-cell-directed therapies fail to elicit effective anti-tumor immune responses. Here, we seek to evaluate the applicability of radio- immunotherapy to modulate tumor immunity and overcome inhibitory effects that diminish anti-cancer activity. Radiotherapy- induced immune modulation resulted in an increase in cytotoxic T-cell numbers and prevented the induction of lymphocyte-mediated immune suppression. Radio-immunotherapy led to significantly improved tumor control with prolonged median survival in experi- mental breast-to-brain metastasis. However, long-term efficacy was not observed. Recurrent brain metastases showed accumula- tion of blood-borne PD-L1+ myeloid cells after radio-immunother- apy indicating the establishment of an immune suppressive environment to counteract re-activated T-cell responses. This finding was further supported by transcriptional analyses indicat- ing a crucial role for monocyte-derived macrophages in mediating immune suppression and regulating T-cell function. Therefore, selective targeting of immune suppressive functions of myeloid cells is expected to be critical for improved therapeutic efficacy of radio-immunotherapy in brain metastases.
Background Endothelium-derived nitric oxide plays an important role for the bone marrow microenvironment. Since several important effects of nitric oxide are mediated by cGMP-dependent pathways, we investigated the role of the cGMP downstream effector cGMP-dependent protein kinase I (cGKI) on postnatal neovascularization. Methodology/Principal Findings In a disc neovascularization model, cGKI -/- mice showed an impaired neovascularization as compared to their wild-type (WT) littermates. Infusion of WT, but not cGKI -/- bone marrow progenitors rescued the impaired ingrowth of new vessels in cGKI-deficient mice. Bone marrow progenitors from cGKI -/- mice showed reduced proliferation and survival rates. In addition, we used cGKI alpha leucine zipper mutant (LZM) mice as model for cGKI deficiency. LZM mice harbor a mutation in the cGKI alpha leucine zipper that prevents interaction with downstream signaling molecules. Consistently, LZM mice exhibited reduced numbers of vasculogenic progenitors and impaired neovascularization following hindlimb ischemia compared to WT mice. Conclusions/Significance Our findings demonstrate that the cGMP-cGKI pathway is critical for postnatal neovascularization and establish a new role for cGKI in vasculogenesis, which is mediated by bone marrow-derived progenitors.
Vismodegib, an inhibitor of the Hedgehog signaling pathway, is an approved drug for monotherapy in locally advanced or metastatic basal cell carcinoma (BCC). Data on combined modality treatment by vismodegib and radiation therapy, however, are rare. In the present study, we examined the radiation sensitizing effects of vismodegib by analyzing viability, cell cycle distribution, cell death, DNA damage repair and clonogenic survival in three-dimensional cultures of a BCC and a head and neck squamous cell carcinoma (HNSCC) cell line. We found that vismodegib decreases expression of the Hedgehog target genes glioma-associated oncogene homologue (GLI1) and the inhibitor of apoptosis protein (IAP) Survivin in a cell line- and irradiation-dependent manner, most pronounced in squamous cell carcinoma (SCC) cells. Furthermore, vismodegib significantly reduced proliferation in both cell lines, while additional irradiation only slightly further impacted on viability. Analyses of cell cycle distribution and cell death induction indicated a G1 arrest in BCC and a G2 arrest in HNSCC cells and an increased fraction of cells in SubG1 phase following combined treatment. Moreover, a significant rise in the number of phosphorylated histone-2AX/p53-binding protein 1 (γH2AX/53BP1) foci in vismodegib- and radiation-treated cells was associated with a significant radiosensitization of both cell lines. In summary, these findings indicate that inhibition of the Hedgehog signaling pathway may increase cellular radiation response in BCC and HNSCC cells.
Spatial and temporal processes shaping microbial communities are inseparably linked but rarely studied together. By Illumina 16S rRNA sequencing, we monitored soil bacteria in 360 stations on a 100 square meter plot distributed across six intra-annual samplings in a rarely managed, temperate grassland. Using a multi-tiered approach, we tested the extent to which stochastic or deterministic processes influenced the composition of local communities. A combination of phylogenetic turnover analysis and null modeling demonstrated that either homogenization by unlimited stochastic dispersal or scenarios, in which neither stochastic processes nor deterministic forces dominated, explained local assembly processes. Thus, the majority of all sampled communities (82%) was rather homogeneous with no significant changes in abundance-weighted composition. However, we detected strong and uniform taxonomic shifts within just nine samples in early summer. Thus, community snapshots sampled from single points in time or space do not necessarily reflect a representative community state. The potential for change despite the overall homogeneity was further demonstrated when the focus shifted to the rare biosphere. Rare OTU turnover, rather than nestedness, characterized abundance-independent β-diversity. Accordingly, boosted generalized additive models encompassing spatial, temporal and environmental variables revealed strong and highly diverse effects of space on OTU abundance, even within the same genus. This pure spatial effect increased with decreasing OTU abundance and frequency, whereas soil moisture – the most important environmental variable – had an opposite effect by impacting abundant OTUs more than the rare ones. These results indicate that – despite considerable oscillation in space and time – the abundant and resident OTUs provide a community backbone that supports much higher β-diversity of a dynamic rare biosphere. Our findings reveal complex interactions among space, time, and environmental filters within bacterial communities in a long-established temperate grassland.
Purpose: Medically recommended training often faces the dilemma that necessary mechanical intensities for muscle adaptations exceed patients' physical capacity. In this regard, blood flow restriction (BFR) training is becoming increasingly popular because it enables gains in muscle mass and strength despite using low-mechanical loads combined with external venous occlusion. Since the underlying mechanisms are still unknown, we applied invasive measurements during exercise with and without BFR to promote physiological understanding and safety of this popular training technique. Methods: In a randomized cross-over design, ten healthy men (28.1 ± 6.5 years) underwent two trials of unilateral biceps curls either with (BFR) and without BFR (CON). For analysis of changes in intravascular pressures, blood gases, oximetry and electrolytes, an arterial and a venous catheter were placed at the exercising arm before exercise. Arterial and venous blood gases and intravascular pressures were analyzed before, during and 5 min after exercise. Results: Intravascular pressures in the arterial and venous system were more increased during exercise with BFR compared to CON (p < 0.001). Furthermore, arterial and venous blood gas analyses revealed a BFR-induced metabolic acidosis (p < 0.05) with increased lactate production (p < 0.05) and associated elevations in [K+], [Ca2+] and [Na+] (p < 0.001). Conclusion: The present study describes for the first time the local physiological changes during BFR training. While BFR causes greater hypertension in the arterial and venous system of the exercising extremity, observed electrolyte shifts corroborate a local metabolic acidosis with concurrent rises in [K+] and [Na+]. Although BFR could be a promising new training concept for medical application, its execution is associated with comprehensive physiological challenges.
Im vorliegenden Beitrag soll untersucht werden, welche Akteur- und Zuschauerkonstellationen sich in Online-Communities aufweisen lassen, die Millionen individueller Nutzer durch Social Software miteinander verbinden. Sind spektatorische Situationen, in denen interagierende soziale Akteure auf einen Dritten treffen, der ihnen zuschaut, auch in medialisierten Formen des sozialen Verkehrs wirksam, in denen die Hauptbedingung der Face-to-Face-Kommunikation, die körperliche Kopräsenz von Akteuren, Co-Akteuren und zuschauenden Dritten, nicht mehr zwingend gegeben ist? Es hat sich erwiesen, daß die webbasierte Gruppendynamik nur dann angemessen zu erfassen ist, wenn die mehrstelligen Akteur- und Zuschauerkonstellationen analysiert werden, in denen sich die (Selbst-)Strukturierungsprozesse in sozialen Gruppen vollziehen. Die Herausforderungen des Web 2.0 haben Neuansätze zu sozial- und kulturwissenschaftlichen Akteurtheorien befördert; das Konzept der spektatorischen Situation, das sich auf Perspektiven- und Positionswechsel zwischen Ego-Akteuren, Alter-Akteuren und zuschauenden Dritten konzentriert, kann als eine Variante dieser neuen Akteurtheorien begriffen werden.
Tierfilme und -reportagen haben Konjunktur, neue Bildtechnologien ermöglichen immer differenziertere Einblicke in Verhaltens- und Lebensweisen bekannter und unbekannter Tierarten. Wir fühlen uns als teilnehmende Beobachter in scheinbar gewagtester Nähe. Das "Privatleben" der Tiere wird bis in den letzten Winkel verfolgt, die Entdeckung der Tierindividualitäten schreitet voran, Tiere bekommen ein Schicksal und wecken Empathie, der vor über 2000 Jahren entstandene Tier-Mensch-Verwandtschafts-Topos, dem noch jeder Gedanke an die Abstammung der Arten fern lag, wird neu belebt. Doch das kulturelle Interesse am Tier erschöpft sich nicht im Fasziniertsein durch perfekt visualisierte Verhaltensstudien oder durch neueste Lesarten der Tiermetaphorik, in der es stets weniger um Tiere als um Menschen geht. Der historische Wandel der menschlichen Tierbeziehung wird in der Tierethik reflektiert.
Seit der Antike umstrittene kognitive Fähigkeiten verschiedener Tierarten bilden heute einen einzelwissenschaftlich fundierten philosophischen Diskussions- und Forschungsgegenstand ("Der Geist der Tiere"). Die Biosemiotik macht große Fortschritte, der Tier-Mensch-Vergleich - bereits ein Kernstück antiker Anthropologie und Ethik - erfährt eine tiefgreifende Umwertung. Dabei steht nicht mehr von vornherein der Mensch im Mittelpunkt; vielmehr wird versucht, das Animalische in seiner Artenvielfalt als eine vielgestaltige eigene Lebensform zu beschreiben; diese ist nicht länger an Maßstäben einer Anthropozentrik zu messen, die im innersten teleologisch geblieben ist. Der Tier-Mensch-Vergleich wird heute nicht mehr so einseitig und ausschließlich auf kognitive Fähigkeiten bezogen. Vielmehr werden weitere Aspekte wie Emotionalität, Wertungs- bzw. Präferenzverhalten, moralanaloge Verhaltensweisen, Antriebsstrukturen, Soziabilität, Zeichenverhalten mit einbezogen. Diese Komplexität der Vergleichspunkte oder Vergleichseinheiten war erst mit dem neuzeitlichen Rationalismus immer mehr eingeschränkt worden. Die gegenwärtig wiedergewonnene Komplexität lässt nach historischen Vorbildern Ausschau halten; da verwundert es nicht, wenn eine Anthropologie ins Blickfeld rückt, die im Tier-Mensch-Vergleich einen ihrer wichtigsten Ausgangspunkte hatte: die antike Anthropologie.
Am 14. November 1956, vormittags gegen zehn Uhr, versammelten sich die Studenten des Philosophischen Instituts der Berliner Humboldt-Universität vor dem Haus Universitätsstraße 3b, dem Sitz des Instituts, zu einem kleinen Demonstrationszug, der angemeldet gewesen sein musste, denn er wurde von zwei Polizeimotorrädern, eines vorne, eines hinten, durch den Verkehr geleitet. Angeführt vom Institutsdirektor Georg Klaus bewegte sich der Zug über die Weidendammer Brücke die Friedrichstraße entlang bis zum Dorotheenstädtischen Friedhof an der Chausseestraße. Anlass war der 150. Todestag von Georg Wilhelm Friedrich Hegel, was den meisten der neugierig zuschauenden Passanten nur wenig sagte. An Hegels Grab wurden Blumen niedergelegt, Reden wurden nicht gehalten, einige Studenten ließen es sich nicht nehmen, auf dem Grabstein, einer alten Sitte gemäß, ein paar Münzen niederzulegen. Es herrschte eine fast fröhliche Stimmung, die von einem Gefühl der Genugtuung erfüllt war, hatte man doch über die Stalinistische Fronde gegen Hegel gesiegt. Ein paar Stunden später traf man sich wieder im vollbesetzten Audi Max, in dem Ernst Bloch einen Vortrag über Hegel und das offene System der marxistischen Philosophie hielt. Zehn Tage zuvor waren sowjetische Panzer in Budapest eingerückt, um eine exzessive Massenerhebung niederzuwalzen. Der Zorn der Massen hatte sich gegen das stalinistische Rákosi-Regime und seine Geheimpolizei gerichtet; die Russen machten jedoch die neue Regierung Imre Nagy für die inneren Unruhen verantwortlich. Die Nagy-Regierung wurde abgesetzt und kriminalisiert, darunter der streitbare Marxist und profunde Hegel-Kenner Georg Lukács. Der Vorgang führte bald auch in der Universitätsstraße 3b zu heftigen Diskussionen. Eine Anfang 1957 als Reforminitiative konzipierte studentische Streitschrift, die die ungarischen Ereignisse als eine Folge der systematischen Verhinderung einer freien öffentlichen Diskussion erklärte, zog die Aufmerksamkeit der SED-Zentrale auf das Institut und löste eine Kette von Parteiverfahren und Maßregelungen aus. Vier Studenten waren von mehrjähriger Studienunterbrechung zwecks Praxisbewährung betroffen, anderthalb Jahre später folgte ein von der Stasi vorbereiteter Schauprozess, der für drei weitere Studenten mit Haftstrafen bis zu sechs Jahren endete.
Der im vergangenen Jahr verstorbene britische Philosoph Bernard Williams hat 1993 sein Buch 'Shame and Necessity' vorgelegt. Williams verheißt eine Befreiung der Antike – vor allem aus den Banden einer universalistischen Fortschrittskonzeption von Evolution und Geschichte; nach deren Maßstäben müssen den Griechen "primitive Ideen des Handelns, der Verantwortung, der ethischen Motivation und der Gerechtigkeit" zugeschrieben werden, "die im Laufe der Geschichte durch ein wesentlich komplexeres und feineres Netz von Vorstellungen ersetzt worden sind, in denen sich eine reifere Form der ethischen Erfahrung niederschlägt".
Es geht Williams nicht um die Fortschreibung der Tradition nach dem Muster einer übergreifenden europäischen Entwicklungskontinuität, sondern um die Aufsprengung einer solchen Kontinuität. Er sieht sich in der Schuld der Cambridge Ritualists, die uns daran gewöhnt hätten, an die Gesellschaften des antiken Griechenland mit Methoden heranzutreten, die denen der Kulturanthropologen ähnlich seien und neue Wege zur Entzifferung der Mythen und Rituale gebahnt hätten. Die Anthropologie der Antike habe uns die Griechen fremd gemacht und einen Sinn für ihre Andersheit erzeugt, der erst erlaubt, konkret historisch nach Ähnlichkeiten und Unterschieden zu fragen. Die Antike aus einer übergreifenden Entwicklungskontinuität herauszusprengen, ist Mittel und Voraussetzung dafür, sie als "historische Formation" wiederzugewinnen. Auch wenn die antike Kultur ihren geschichtsphilosophisch privilegierten Status verloren hat, sieht Williams die Europäer in einem besonderen Verhältnis zu den "alten Griechen". Ohne blind zu sein für das, "was die Geschichte der europäischen Herrschaft zerstört oder beiseitegeschoben hat", sei das, "was wir von den Griechen lernen können", wenn wir sie mit neuen Augen sehen, Bestandteil eines soziokulturellen Selbstverständigungsprozesses, in dem Figuren des Europäischen zur Debatte stehen. Hauptgegenstand von Williams’ Buch ist die Relevanz antiker Personalitätsmodelle für die gegenwärtige Ethikdebatte.
Background: In intensive care units (ICU) octogenarians become a routine patients group with aggravated therapeutic and diagnostic decision-making. Due to increased mortality and a reduced quality of life in this high-risk population, medical decision-making a fortiori requires an optimum of risk stratification. Recently, the VIP-1 trial prospectively observed that the clinical frailty scale (CFS) performed well in ICU patients in overall-survival and short-term outcome prediction. However, it is known that healthcare systems differ in the 21 countries contributing to the VIP-1 trial. Hence, our main focus was to investigate whether the CFS is usable for risk stratification in octogenarians admitted to diversified and high tech German ICUs.
Methods: This multicentre prospective cohort study analyses very old patients admitted to 20 German ICUs as a sub-analysis of the VIP-1 trial. Three hundred and eight patients of 80 years of age or older admitted consecutively to participating ICUs. CFS, cause of admission, APACHE II, SAPS II and SOFA scores, use of ICU resources and ICU- and 30-day mortality were recorded. Multivariate logistic regression analysis was used to identify factors associated with 30-day mortality.
Results: Patients had a median age of 84 [IQR 82–87] years and a mean CFS of 4.75 (± 1.6 standard-deviation) points. More than half of the patients (53.6%) were classified as frail (CFS ≥ 5). ICU-mortality was 17.3% and 30-day mortality was 31.2%. The cause of admission (planned vs. unplanned), (OR 5.74) and the CFS (OR 1.44 per point increase) were independent predictors of 30-day survival.
Conclusions: The CFS is an easy determinable valuable tool for prediction of 30-day ICU survival in octogenarians, thus, it may facilitate decision-making for intensive care givers in Germany.
Trial registration: The VIP-1 study was retrospectively registered on ClinicalTrials.gov (ID: NCT03134807) on May 1, 2017.
Rezensionen [2020]
(2020)
Verzeichnis
Einzelrezensionen
148 Bäni Rigler, Petra: Bilderbuch – Lesebuch – Künstlerbuch. Elsa Beskows Ästhetik des Materiellen (Heinz-Jürgen Kliewer)
149 Barilaro, Christina/Oetken, Mareile(Hg.): Erzähl mir vom Tier. Tiere in der Kinderliteratur und in der Natur (Kurt Franz)
151 Bieker, Nadine: Erzählanfänge und Erzählschlüsse im Adoleszenzroman (Astrid Henning-Mohr)
153 Blumesberger, Susanne/Seibert, Ernst (Hg.): Kinderliteratur in Wien um 1800 (Michael Stierstorfer)
154 Brons, Patricia/Nickel, Artur /Nicolai, Matthias (Hg.): Kästneriaden zum 120. Geburtstag (Sabine Planka)
156 Dallmann, Christine/Hartung, Anja/Aigner, Alfons /Buchele, Kai-Thorsten (Hg.): Comics. Interdisziplinäre Perspektiven aus Theorie und Praxis auf ein Stiefkind der Medienpädagogik (Carolin Führer)
157 Darr, Yael: The Nation and the Child. Nation Building in Hebrew Children’s Literature, 1930–1970 (Susanne Blumesberger)
159 Dingelmaier, Theresia: Das Märchen vom Märchen. Eine kultur- und literaturwissenschaftliche Untersuchung des deutschsprachigen jüdischen Volks- und Kindermärchens (Kurt Franz)
161 Field, Hannah: Playing with the Book. Victorian Movable Picture Books and the Child Reader (Petra Bäni Rigler)
163 Gittinger, Kerstin/ Loidl, Sonja (Hg.): Unter Wölfen. Käthe Recheis – Literatur und Politik (Lena Hoffmann)
164 Giuriato, Davide/Hubmann, Philipp/Schildmann, Mareike (Hg.): Kindheit und Literatur. Konzepte – Poetik – Wissen (Ernst Seibert)
166 Glasenapp, Gabriele von/Pecher, Claudia Maria/Anker, Martin (Hg.): Martin Luther und die Reformation in der Kinder- und Jugendliteratur. Beiträge zur literarhistorischen und literarästhetischen Praxis (Roland Issler)
169 Gruner, Elizabeth Rose: Constructing the Adolescent Reader in Contemporary Young Adult Fiction (Thomas Kullmann)
171 Harde, Roxanne/Kokkola, Lydia (Hg.): The Embodied Child. Readings in Children’s Literature and Culture (Thomas Kullmann)
172 Holzen, Aleta-Amirée von: Maskierte Helden. Zur Doppelidentität in Pulp-Novels und Superheldencomics (Maike Paiska)
174 Hubli, Kathrin: Kunstprojekt (Mumin-)Buch. Tove Janssons prozessuale Ästhetik und materielle Transmission (Ben Dammers)
175 Jantzen, Christoph/ Josting, Petra/Ritter, Michael (Hg.): Ästhetik – Leserbezug – Wirkung. Ansprüche an Kinder- und Jugendliteratur im Wandel der Zeit (Nadine Bieker)
177 Jung, Britta C.: Komplexe Lebenswelten – multidirektionale Erinnerungsdiskurse. Jugendliteratur zum Nationalsozialismus, Zweiten Weltkrieg und Holocaust im Spiegel des postmemorialen Wandels (Susanne Blumesberger)
179 Meyer, Christina: Producing Mass Entertainment. The Serial Life of the Yellow Kid (Aleta-Amirée von Holzen)
181 Rox-Helmer, Monika: Der historische Jugendroman als geschichtskulturelle Gattung. Fiktionalisierung von Geschichte und ihr didaktisches Potential (Annette Kliewer)
182 Seidel, Nadine Maria: Adoleszenz, Geschlecht, Identität. Queere Konstruktionen in Romanen nach der Jahrtausendwende (Annette Kliewer)
184 Sonyem, Alain Belmond: Kinder- und Jugendliteratur als Gegendiskurs? Zu Afrikavorstellungen in neueren deutschen und deutschafrikanischen Kinder- und Jugendbüchern (Astrid Henning-Mohr)
186 Sprenger, Karoline: Bertolt Brechts Kinderlyrik. Hintergründe, Analysen und fachdidaktische Perspektiven (Kurt Franz)
188 Uhlig, Bettina/ Lieber, Gabriele/Pieper, Irene (Hg.): Erzählen zwischen Bild und Text (Heinz-Jürgen Kliewer) 190 Van Nahl, Ruth: Jugendkrimis im 21. Jahrhundert. Eine Typologie (Sabine Fuchs)
192 Wietersheim, Annegret von: »Später einmal werde ich es dir erzählen«. Leerstellen in der Kinder- und Jugendliteratur der 1950er Jahre (Susanne Blumesberger)
A recent global meta‐analysis reported a decrease in terrestrial but increase in freshwater insect abundance and biomass (van Klink et al., Science 368, p. 417). The authors suggested that water quality has been improving, thereby challenging recent reports documenting drastic global declines in freshwater biodiversity. We raise two major concerns with the meta‐analysis and suggest that these account for the discrepancy with the declines reported elsewhere. First, total abundance and biomass alone are poor indicators of the status of freshwater insect assemblages, and the observed differences may well have been driven by the replacement of sensitive species with tolerant ones. Second, many of the datasets poorly represent global trends and reflect responses to local conditions or nonrandom site selection. We conclude that the results of the meta‐analysis should not be considered indicative of an overall improvement in the condition of freshwater ecosystems.
Die vorliegende Arbeit beschäftigt sich mit der Erfassung und Beschreibung von elf Waldresten im südlich der Donau liegenden Teil des Wiener Beckens. Das Untersuchungsgebiet ist durch von Löss bedeckte Schotterterrassen geprägt. Die Waldreste wurden floristisch erfasst und syntaxonomisch bearbeitet. Zusätzlich wurde in den Franziszäischen Kataster von 1820 Einsicht genommen, um genauere Informationen über die damaligen Nutzungsformen der heutigen Waldflächen zu erhalten. Die Eichen- Hainbuchenwälder wurden in das Polygonato latifolii-Carpinetum, die Eichenwälder großenteils in das Euphorbio angulatae-Quercetum eingereiht. Innerhalb dieser Assoziation wurden vier Ausbildungen ausgewiesen (degradiert, frisch, mäßig trocken und trocken). Eine Aufnahme wurde zum Lithospermo purpurocaerulei-Quercetum pubescentis gestellt. Drei Aufnahmen aus Beständen, die deutlich durch die Robinie überprägt sind, wurden als Balloto-Robinietum klassifiziert. Das Areal dieser Eichen- und Eichen-Hainbuchenwälder ist altes Siedlungsgebiet und wird seit Jahrhunderten (z.T. Jahrtausenden) genutzt, weshalb der Wald nur noch in Form von Fragmenten erhalten ist. Weiters sind neophytische Baumarten wie die Robinie und der Götterbaum ein Problem für den Fortbestand dieser Wälder, da sie die natürliche Artenzusammensetzung der Bestände verändern.
NIMA (never-in-mitosis gene A)-related kinase 1 (Nek1) is shown to impact on different cellular pathways such as DNA repair, checkpoint activation, and apoptosis. Its role as a molecular target for radiation sensitization of malignant cells, however, remains elusive. Stably transduced doxycycline (Dox)-inducible Nek1 shRNA HeLa cervix and siRNA-transfected HCT-15 colorectal carcinoma cells were irradiated in vitro and 3D clonogenic radiation survival, residual DNA damage, cell cycle distribution, and apoptosis were analyzed. Nek1 knockdown (KD) sensitized both cell lines to ionizing radiation following a single dose irradiation and more pronounced in combination with a 6 h fractionation (3 × 2 Gy) regime. For preclinical analyses we focused on cervical cancer. Nek1 shRNA HeLa cells were grafted into NOD/SCID/IL-2Rγc−/− (NSG) mice and Nek1 KD was induced by Dox-infused drinking water resulting in a significant cytostatic effect if combined with a 6 h fractionation (3 × 2 Gy) regime. In addition, we correlated Nek1 expression in biopsies of patients with cervical cancer with histopathological parameters and clinical follow-up. Our results indicate that elevated levels of Nek1 were associated with an increased rate of local or distant failure, as well as with impaired cancer-specific and overall survival in univariate analyses and for most endpoints in multivariable analyses. Finally, findings from The Cancer Genome Atlas (TCGA) validation cohort confirmed a significant association of high Nek1 expression with a reduced disease-free survival. In conclusion, we consider Nek1 to represent a novel biomarker and potential therapeutic target for drug development in the context of optimized fractionation intervals.
The title compound, [Fe2(C5H5)2(C24H22BP2)(CO)4][FeCl4]·CHCl3, is an oxidation product of CpFe(CO)2PPh2BH3. One pair of phenyl rings attached to the two different P atoms are almost parallel, as are the other pair [dihedral angles = 8.7 (5) and 8.9 (5)°]. The planes of the two cyclopentadienyl rings are inclined by 26.8 (7)° with respect to each other. The carbonyl groups at each Fe atom are almost perpendicular [C-Fe-C = 92.6 (6) and 94.3 (5)°]. Key indicators: single-crystal X-ray study; T = 173 K; mean σ(C–C) = 0.019 Å; R factor = 0.112; wR factor = 0.177; data-to-parameter ratio = 16.8.
The geometric parameters of the molecule of the title compound, C14H16O2P2, are in the usual ranges. It is a meso compound with the two chiral P atoms having opposite configurations. The P-CH2-CH2-P chain adopts a trans conformation [torsion angle -178.59 (17)°]. The P=O bonds are almost coplanar with the adjacent phenyl ring [torsion angles = 3.8 (3) and 0.3 (3)°]. Whereas one of them is synclinal [torsion angle = -59.0 (2)°] to the central C-C bond, the other is anticlinal [torsion angle = 56.6 (2)°] to the central C-C bond. The dihedral angle between the two phenyl rings is 5.2 (3)°. The molecules are linked by weak C-H...O hydrogen bonds. They crystallize in rows running along the c axis. Key indicators: single-crystal X-ray study; T = 173 K; mean σ(C–C) = 0.005 Å; R factor = 0.038; wR factor = 0.093; data-to-parameter ratio = 15.2.
The title compound, [Li4O4(C12H8BO)4(C4H10O)4], features a Li4O4 cube. Each Li atom in the cube is additionally coordinated by a diethyl ether molecule and each O atom in the cube carries a 9-oxa-10-boraanthracene residue. The crystal studied was a non-merohedral twin [twin law (-1 0 0 / 0 0 1 / 0 1 0); the contribution of the major twin component refined to 0.553 (3)] emulating apparent tetragonal symmetry, whereas the actual crystal system is just orthorhombic.
Mol-ecules of the title compound, [Zn(8)(C(6)F(5))(8)O(4)(C(4)H(10)O)(4)], are located on a special position of site symmetry [Formula: see text]. As a result, there is just one quarter-mol-ecule in the asymmetric unit. The title compound features a Zn(4)O(4) cube. Each Zn atom in the cube carries a pentafluorophenyl substituent. Each O atom is bonded to a further Zn atom, which is connected to a pentafluorophenyl substituent and the O atom of a diethyl ether mol-ecule. All ether C atoms are disordered over two sets of sites with a site occupation factor of 0.51 (2) for the major occupied site.
Brain metastases are the most common intracranial tumor in adults and are associated with poor patient prognosis and median survival of only a few months. Treatment options for brain metastasis patients remain limited and largely depend on surgical resection, radio- and/or chemotherapy. The development and pre-clinical testing of novel therapeutic strategies require reliable experimental models and diagnostic tools that closely mimic technologies that are used in the clinic and reflect histopathological and biochemical changes that distinguish tumor progression from therapeutic response. In this study, we sought to test the applicability of magnetic resonance (MR) spectroscopy in combination with MR imaging to closely monitor therapeutic efficacy in a breast-to-brain metastasis model. Given the importance of radiotherapy as the standard of care for the majority of brain metastases patients, we chose to monitor the post-irradiation response by magnetic resonance spectroscopy (MRS) in combination with MR imaging (MRI) using a 7 Tesla small animal scanner. Radiation was applied as whole brain radiotherapy (WBRT) using the image-guided Small Animal Radiation Research Platform (SARRP). Here we describe alterations in different metabolites, including creatine and N-acetylaspartate, that are characteristic for brain metastases progression and lactate, which indicates hypoxia, while choline levels remained stable. Radiotherapy resulted in normalization of metabolite levels indicating tumor stasis or regression in response to treatment. Our data indicate that the use of MR spectroscopy in addition to MRI represents a valuable tool to closely monitor not only volumetrical but also metabolic changes during tumor progression and to evaluate therapeutic efficacy of intervention strategies. Adapting the analytical technology in brain metastasis models to those used in clinical settings will increase the translational significance of experimental evaluation and thus contribute to the advancement of pre-clinical assessment of novel therapeutic strategies to improve treatment options for brain metastases patients.
Rezensionen [2018]
(2018)
Verzeichnis
Einzelrezensionen
154 Beauvais, Clémentine: The Mighty Child. Time and Power in Children’s Literature (Thomas Kullmann)
155 Dean-Ruzicka, Rachel: Tolerance Discourse and Young Adult Holocaust Literature. Engaging Difference and Identity (Susanne Blumesberger)
157 Dolle-Weinkauff, Bernd (Hrsg.): Geschichte im Comic. Befunde – Theorien – Erzählweisen (Caroline Wittig)
159 Ewers, Hans-Heino (Hrsg.): Erster Weltkrieg: Kindheit, Jugend und Literatur. Deutschland, Österreich, Osteuropa, England, Belgien und Frankreich (Kurt Franz)
161 Franz, Kurt / Lange, Günter (Hrsg.): Der Stoff, aus dem Geschichten sind. Intertextualität im Werk Otfried Preußlers (sabine fuchs)
163 Glasenapp, Gabriele von/Kagelmann, Andre/Giesa, Felix (Hrsg.): Die Zeitalter werden besichtigt. Aktuelle Tendenzen der Kinder- und Jugendliteraturforschung. Festschrift für Otto Brunken (Karin Richter)
165 Josting, Petra/Schmideler, Sebastian (Hrsg.): Bonsels’ Tierleben. Insekten und Kriechtiere in Kinder- und Jugendmedien (Kurt Franz)
167 Kriegleder, Wynfrid/ Lexe, Heidi / Loidl, Sonja/ Seibert, Ernst (Hrsg.): Jugendliteratur im Kontext von Jugendkultur (Lena Hoffmann)
169 Kurwinkel, Tobias: Bilderbuchanalyse. Narrativik – Ästhetik – Didaktik (Annette Kliewer)
171 Langenhorst, Georg/Naurath, Elisabeth (Hrsg.): Kindertora – Kinderbibel – Kinderkoran. Neue Chancen für (inter-)religiöses Lernen (Renate Grubert)
172 Lathey, Gillian: Translating Children’s Literature (heike Elisabeth Jüngst)
174 Mairbäurl, Gunda/Seibert, Ernst (Hrsg.): Kulturelle Austauschprozesse in der Kinder- und Jugendliteratur. Zur genrespezifischen Transformation von Themen, Stoffen und Motiven im medialen Kontext (Sarah Terhorst)
176 Maiwald, Klaus /Meyer, Anna-Maria/Pecher, Claudia Maria (Hrsg.): »Klassiker« des Kinderund Jugendfilms (Michael Stierstorfer)
177 Mills, Claudia (Hrsg.): Ethics in Children’s Literature (Thomas Kullmann)
179 Nast, Mirjam: »Perry Rhodan« lesen. Zur Serialität der Lektürepraktiken einer Heftromanserie (Wolfgang Biesterfeld)
181 O’Sullivan, Emer / Immel, Andrea (Hrsg.): Imagining Sameness and Difference in Children’s Literature. From the Enlightenment to the Present Day (Iris Schäfer)
182 Oetken, Mareile: Wie Bilderbücher erzählen. Analysen multimodaler Strukturen und bimedialen Erzählens im Bilderbuch (Katharina Egerer)
184 Schmideler, Sebastian (Hrsg.): Wissensvermittlung in der Kinder- und Jugendliteratur der DDR. Themen, Formen, Strukturen, Illustrationen (Sabine Planka)
186 Standke, Jan (Hrsg.): Wolfgang Herrndorf lesen. Beiträge zur Didaktik der deutschsprachigen Gegenwartsliteratur (Sabine Planka)
187 Viel, Bernhard: Der Honigsammler. Waldemar Bonsels, Vater der Biene Maja. Eine Biografie (Renate Grubert)
189 Zellerhoff, Rita: Komplexe sprachliche Strukturen in der Jugendliteratur. Aufgezeigt an Beispielen preisgekrönter Werke der Jugendjury des Deutschen Jugendliteraturpreises (Susanne Riegler)
Sammelrezensionen
191 Anker, Martin u.a. (Hrsg.): Grimms Märchenwelten im Bilderbuch. Beiträge zur Entwicklung des Märchenbilderbuches seit Mitte des 20. Jahrhunderts. – Brinker-von der Heyde, Claudia u. a. (Hrsg.): Märchen, Mythen und Moderne. 200 Jahre Kinder- und Hausmärchen der Brüder Grimm. – Joosen, Vanessa/ Lathey, Gillian (Hrsg.): Grimms’ Tales around the Globe. The Dynamics of their International Reception (Thomas Bitterlich)
194 Böhm, Kerstin: Archaisierung und Pinkifizierung. Mythen von Weiblichkeit und Männlichkeit in der Kinder- und Jugendliteratur. – Dangendorf, Sarah: Kleine Mädchen in High Heels. Über die visuelle Sexualisierung frühadoleszenter Mädchen (Annette Kliewer)
197 Gordon, Ian: Kid Comic Strips. A Genre Across Four Countries. – Kupczynska, Kalina/Renata Makarska (Hrsg.): Comic in Polen. Polen im Comic. – Kutch, Lynn Marie (Hrsg.): Novel Perspectives on German-Language Comics Studies. History, Pedagogy, Theory. – Reddition. Zeitschrift für Graphische Literatur (66) 2017: Ein halbes Jahrhundert Carlsen Comics. – Rosenfeldt, Reginald: ComicPioniere. Die deutschen Comic-Künstler der 1950er Jahre (Felix Giesa)
Background: MicroRNA-21 (miR-21) is up-regulated in tumor tissue of patients with malignant diseases, including hepatocellular carcinoma (HCC). Elevated concentrations of miR-21 have also been found in sera or plasma from patients with malignancies, rendering it an interesting candidate as serum/plasma marker for malignancies. Here we correlated serum miR-21 levels with clinical parameters in patients with different stages of chronic hepatitis C virus infection (CHC) and CHC-associated HCC.
Methodology/Principal Findings: 62 CHC patients, 29 patients with CHC and HCC and 19 healthy controls were prospectively enrolled. RNA was extracted from the sera and miR-21 as well as miR-16 levels were analyzed by quantitative real-time PCR; miR-21 levels (normalized by miR-16) were correlated with standard liver parameters, histological grading and staging of CHC. The data show that serum levels of miR-21 were elevated in patients with CHC compared to healthy controls (P<0.001); there was no difference between serum miR-21 in patients with CHC and CHC-associated HCC. Serum miR-21 levels correlated with histological activity index (HAI) in the liver (r = −0.494, P = 0.00002), alanine aminotransferase (ALT) (r = −0.309, P = 0.007), aspartate aminotransferase (r = −0.495, P = 0.000007), bilirubin (r = −0.362, P = 0.002), international normalized ratio (r = −0.338, P = 0.034) and γ-glutamyltransferase (r = −0.244, P = 0.034). Multivariate analysis revealed that ALT and miR-21 serum levels were independently associated with HAI. At a cut-off dCT of 1.96, miR-21 discriminated between minimal and mild-severe necroinflammation (AUC = 0.758) with a sensitivity of 53.3% and a specificity of 95.2%.
Conclusions/Significance: The serum miR-21 level is a marker for necroinflammatory activity, but does not differ between patients with HCV and HCV-induced HCC.
Artenreiche montane Rasengesellschaften auf Lawinenbahnen des Nationalparks Gesäuse (Österreich)
(2009)
Das Ziel dieser Untersuchung war es, Erkenntnisse über die Bedeutung von Lawinenbahnen für die Biodiversität zu gewinnen. Dazu wurden im Nationalpark Gesäuse (Steiermark, Österreich) 16 Pflanzenbestände in drei ausgewählten Lawinenbahnen pflanzensoziologisch untersucht, vegetationsökologisch charakterisiert sowie mit Vegetationstabelle, bodenkundlichen Analysedaten und topographischen Parametern dokumentiert. Außerdem erfolgte eine Bestandsaufnahme der Schmetterlinge. Die Pflanzenartenvielfalt wurde mit verschiedenen Diversitäts-Indizes beurteilt. Die Ursachen für den Artenreichtum in den untersuchten Lawinenbahnen werden diskutiert.
Die Pflanzenbestände wurden überwiegend zum Origano-Calamagrostietum variae gestellt; eine Einzelaufnahme wurde dem Seslerio-Caricetum sem pervirentis zugeordnet. Im Ersteren dominieren Arten mit hemikryptophytischer Lebensform; Therophyten erreichen die zweithöchste Deckung. Die Pflanzengesellschaft wird von CSR-, CS- und C-Strategen aufgebaut; alle anderen Lebensstrategietypen haben keine Bedeutung. Das Origano-Calamagrostietum variae ist eine artenreiche, natürliche Dauergesellschaft, in der mäßiger Stress und schwache Störungen die Artenzusammensetzung maßgeblich bestimmen. Aktive Lawinenbahnen auf sehr flachgründigen, steinigen, nährstoffarmen, basenreichen Rendzinen in lokalklimatisch wärmebegünstigten steilen Hanglagen der montanen Höhenstufe zählen zu den arten-, blüten- und aspektreichsten und somit ökologisch wertvollsten Vegetationsformationen im Nationalparkgebiet. In den kräuterreichen Pflanzenbeständen wurden im Durchschnitt 71 Gefäßpflanzenarten und 5 Moosarten pro 20 m2 Aufnahmefläche gefunden. Mit dieser hohen Phytodiversität und dem Blütenreichtum ist auch eine große Artenvielfalt bei den Schmetterlingen verbunden. Die untersuchten Lawinenbahnen weisen nicht nur ein hohes Maß an Naturnähe auf, sie dürften auch der ursprüngliche Lebensraum einiger Pflanzenarten des Wirtschafts- und Extensivgrünlandes der Tallagen sein. Auf Grund ihrer hohen naturschutzfachlichen Bedeutung müssen Lawinenbahnen als Ganzes geschützt werden. Periodische oder episodische Lawinenabgänge sind Voraussetzung für die Existenz dieser störungsgeprägten Ökosysteme. Unterhalb von Lawinenbahnen dürfen keine Gebäude oder Infrastrukturen errichtet werden, weil diese Bautätigkeit Schutzobjekte erzeugt. Dadurch würde ein Bedarf für Schutzmaßnahmen entstehen, vor allem in Form von Lawinenverbauungen und Aufforstungen, wodurch Lawinenabgänge verhindert werden.
The ability of hematopoietic stem cells (HSCs) to self-renew is a prerequisite for the establishment of definitive hematopoiesis and life-long blood regeneration. Here, we report the single-stranded DNA-binding transcriptional regulator far upstream element (FUSE)-binding protein 1 (FUBP1) as an essential factor of HSC self-renewal. Functional inactivation of FUBP1 in two different mouse models resulted in embryonic lethal anemia at around E15.5 caused by severely diminished HSCs. Fetal and adult HSCs lacking FUBP1 revealed an HSC-intrinsic defect in their maintenance, expansion, and long-term blood reconstitution, but could differentiate into all hematopoietic lineages. FUBP1-deficient adult HSCs exhibit significant transcriptional changes, including upregulation of the cell-cycle inhibitor p21 and the pro-apoptotic Noxa molecule. These changes caused an increase in generation time and death of HSCs as determined by video-microscopy-based tracking. Our data establish FUBP1 and its recognition of single-stranded genomic DNA as an important element in the transcriptional regulation of HSC self-renewal.
Within the last 30 years the role of nitrogen in Central European forests has changed fundamentally from limiting resource to environmental problem. As the retrospective tracking of nutrient availability by soil chemical and biogeochemical measurements faces serious problems, bioindication based on understorey species composition is indispensable for monitoring broad-scale eutrophication. Based on a broad survey of more than 100,000 forest vegetation plots accessible in electronic data-bases from Germany and adjacent countries, we calculated unweighted average Ellenberg nutrient values (mN) as a proxy of plant-available macronutrients. Based on the quantiles of the frequency distribution of mN in a regionally stratified sample, we define five trophic classes, which can be used to compare dimensionless mN values. We studied spatial patterns of average nutrient values within 17 regions and compared the periods from 1899 to 1975 and 1976 to 2006. After 1975 eutrophic (mN > 5.67) and hypertrophic (mN > 6.28) conditions were common everywhere except in the Alps and Saxony-Anhalt, but very oligotrophic conditions (mN < 3.44) were still widespread in regions with nutrient-poor bedrock. Before 1975 mN of plots had been lower than after 1975 in all but the southeastern regions. Between the pre- and post-1975 data the proportion of hypertrophic plots increased from 5.7 to 11.8%, and that of very oligo-trophic plots decreased from 14.6 to 8.3%. To remove bias resulting from uneven distribution, the dataset was stratified by five tree layer dominance types, period and region and resampled. In pre-1975 plots medians of mN increased in the order Pinus sylvestris, Quercus spp., Picea abies, Fagus sylvatica and Alnus spp, whereas the increase of mN was highest in forest types with historically low nutrient values. Therefore, the widespread change in mN must be attributed to the pronounced vegetation changes in Quercus and Pinus stands, indicating the importance of land-use change, i.e. recovery of nutrient cycles after hundreds of years of exploitation through coppicing, grazing and litter use. The analysis confirms eutrophication as a megatrend of modern vegetation change and demonstrates the high research potential of linking vegetation plot databases across large regions.
Purpose: The prospective, randomized ERGO2 trial investigated the effect of calorie-restricted ketogenic diet and intermittent fasting (KD-IF) on re-irradiation for recurrent brain tumors. The study did not meet its primary endpoint of improved progression-free survival in comparison to standard diet (SD). We here report the results of the quality of life/neurocognition and a detailed analysis of the diet diaries. Methods: 50 patients were randomized 1:1 to re-irradiation combined with either SD or KD-IF. The KD-IF schedule included 3 days of ketogenic diet (KD: 21–23 kcal/kg/d, carbohydrate intake limited to 50 g/d), followed by 3 days of fasting and again 3 days of KD. Follow-up included examination of cognition, quality of life and serum samples. Results: The 20 patients who completed KD-IF met the prespecified goals for calorie and carbohydrate restriction. Substantial decreases in leptin and insulin and an increase in uric acid were observed. The SD group, of note, had a lower calorie intake than expected (21 kcal/kg/d instead of 30 kcal/kg/d). Neither quality of life nor cognition were affected by the diet. Low glucose emerged as a significant prognostic parameter in a best responder analysis. Conclusion: The strict caloric goals of the ERGO2 trial were tolerated well by patients with recurrent brain cancer. The short diet schedule led to significant metabolic changes with low glucose emerging as a candidate marker of better prognosis. The unexpected lower calorie intake of the control group complicates the interpretation of the results. Clinicaltrials.gov number: NCT01754350; Registration: 21.12.2012.
Purpose: The prospective, randomized ERGO2 trial investigated the effect of calorie-restricted ketogenic diet and intermittent fasting (KD-IF) on re-irradiation for recurrent brain tumors. The study did not meet its primary endpoint of improved progression-free survival in comparison to standard diet (SD). We here report the results of the quality of life/neurocognition and a detailed analysis of the diet diaries. Methods: 50 patients were randomized 1:1 to re-irradiation combined with either SD or KD-IF. The KD-IF schedule included 3 days of ketogenic diet (KD: 21–23 kcal/kg/d, carbohydrate intake limited to 50 g/d), followed by 3 days of fasting and again 3 days of KD. Follow-up included examination of cognition, quality of life and serum samples. Results: The 20 patients who completed KD-IF met the prespecified goals for calorie and carbohydrate restriction. Substantial decreases in leptin and insulin and an increase in uric acid were observed. The SD group, of note, had a lower calorie intake than expected (21 kcal/kg/d instead of 30 kcal/kg/d). Neither quality of life nor cognition were affected by the diet. Low glucose emerged as a significant prognostic parameter in a best responder analysis. Conclusion: The strict caloric goals of the ERGO2 trial were tolerated well by patients with recurrent brain cancer. The short diet schedule led to significant metabolic changes with low glucose emerging as a candidate marker of better prognosis. The unexpected lower calorie intake of the control group complicates the interpretation of the results. Clinicaltrials.gov number: NCT01754350; Registration: 21.12.2012.
Clathrates are candidate materials for thermoelectric applications because of a number of unique properties. The clathrate I phases in the Ba-Ni-Ge ternary system allow controlled variation of the charge carrier concentration by adjusting the Ni content. Depending on the Ni content, the physical properties vary from metal-like to insulator-like and show a transition from p-type to n-type conduction. Here we present first results on the characterization of millimeter-sized single crystals grown by the Bridgman technique. Single crystals with a composition of Ba8Ni3.5Ge42.1h0.4 show metallic behavior (dp/dT > 0) albeit with high resistivity at room temperature [p (300 K) = 1 mOhm cm]. The charge carrier concentration at 300 K, as determined from Hall-effect measurements, is 2.3 e-/unit cell. The dimensionless thermoelectric figure of merit estimated at 680 K is ZT ~ 0.2. Keywords Clathrates - thermoelectric material - intermetallic compound - nickel