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Batten disease refers to neuronal ceroid lipofuscinoses (NCLs), which are inherited lysosomal storage diseases with diverse ages of onset and cause progressive neurodegeneration. The most common NCL is Juvenile NCL (JNCL), which begins in early childhood and is characterized by lysosomal accumulation of subunit c of the mitochondrial ATP synthase (subunit c). JNCL is caused by mutations in the gene CLN3. This gene encodes the CLN3 protein, a transmembrane protein of unknown structure. Localization of CLN3 is ambiguous, and its exact cellular function is not known. Thereby, it is unclear what mechanisms lead to neurodegeneration in JNCL. Models of JNCL present disturbed membrane bound organelles and cytoskeleton as well as impaired autophagy and lysosomal function. The JNCL gene defect that most patients harbor is deletion of the exons 7 and 8 of CLN3. In the Cln3Δex7/8/Δex7/8 mouse model of JNCL, this deletion has been introduced to the mouse Cln3 gene.
The actin cytoskeleton consists of filaments formed through polymerization of actin and provides a framework which defines cellular morphology and also facilitates cell motility, cytokinesis, and cell surface remodeling. Rho GTPases are signaling proteins which regulate the assembly and dynamics of the actin cytoskeleton and play an important role in neuronal morphology. Rho GTPases need to be membrane-anchored in order to become active and initiate a signaling cascade. Their membrane anchorage is achieved through their geranylgeranyl tails, which they acquire through prenylation. Protein prenylation refers to the attachment of a geranylgeranyl or farnesyl group to the C-terminus of a protein. The enzyme geranylgeranyl transferase (GGTase) catalyzes geranylgeranylation, whereas geranylgeranyl pyrophosphate (GGPP) is the donor of the geranylgeranyl group. Cells produce GGPP as well as cholesterol and other lipids through the mevalonate pathway (MVA pathway).
The aim of this study was to analyze how the JNCL gene defect affects cellular morphology, especially the actin cytoskeleton and Rho GTPases, and the MVA pathway which is connected with Rho GTPase activation. These important cellular components play crucial roles in neurons and are implicated in other neurodegenerative diseases, but have received little attention in JNCL. The immortalized CbCln3Δex7/8/Δex7/8 cerebellar precursor cell line from Cln3Δex7/8/Δex7/8 mice was used for the experiments and provides a genetically accurate, neuronal cell model of JNCL. CbCln3Δex7/8/Δex7/8 cells present subunit c accumulation only when aged at confluency, but sub-confluent cells display other phenotypes. The experiments of this study were performed both with confluency-aged and sub-confluent cells. Filamentous actin was visualized, and protein levels as well as membrane localization of several small Rho GTPases was analyzed biochemically. Also the protein levels of GGTase and the key enzymes of the mevalonate pathway were determined.
Staining pattern of filamentous actin was disturbed in confluency-aged CbCln3Δex7/8/Δex7/8 cells. Additionally it was found out that these cells did not grow to wild-type size and exhibited an elongated peroxisomal morphology. Rho GTPases had reduced total levels and showed a tendency of decreased membrane localization. Levels of GGTase and the MVA pathway enzymes were altered. Results of sub-confluent CbCln3Δex7/8/Δex7/8 cells were similar with the exception of HMG-CoA reductase, which is the rate-limiting enzyme of the MVA pathway: while its level in confluency-aged CbCln3Δex7/8/Δex7/8 cells was increased, at sub-confluency it showed a reduced level. Also, in contrast with the confluency-aged cells, Rho GTPases presented a tendency of increased membrane localization.
The results of this study reveal that the accurate JNCL gene defect alters cellular morphology and the activity of the MVA pathway in neuronal cells. Small cell size and disrupted architecture of the actin cytoskeleton are confirmed as neuronal JNCL phenotypes, and the peroxisome is introduced as a novel cellular component affected in JNCL. Through defects in endocytosis, autophagy, lysosomal and mitochondrial function, and cytoskeleton, the JNCL gene defect may prevent cells from growing to wild-type size. The JNCL gene defect may attenuate the MVA pathway via mitochondrial dysfunction and/or upregulation of degradative processes. Attenuation of the MVA pathway may contribute to impaired membrane rafts, which are an established phenotype of JNCL cells. As indicated by reduced GGTase level and supported by downregulation of lipid production through the MVA pathway, the JNCL gene defect might also decrease prenylation of proteins.
Cognitive flexibility and cognitive stability : neural and behavioral correlates in men and mice
(2014)
The ability to flexibly adjust behavior according to a changing environment is crucial to ensure a species' survival. However, the successful pursuit of goals also requires the stable maintenance of behavior in the face of potential distractors. Thus, cognitive flexibility and cognitive stability are important processes for the cognitive control of behavior. There is a large body of behavioral and neuroimaging research concerning cognitive control in general, but also specifically on cognitive flexibility and cognitive stability, albeit most often assessed in separate task paradigms. Nevertheless, whether cognitive flexibility and cognitive stability depend upon separate or shared neuronal bases is still a matter of debate. Complementing empirical research, computational models have become an important strategy in neuroscientific research, as they have the potential of providing mechanistic explanations of empirical observations, for example by allowing for the direct manipulation of molecular parameters in simulated neural networks. The computational model underlying the so-called Dual-State Theory contains specific hypotheses with respect to cognitive flexibility and cognitive stability. The neural networks simulated by this model exhibit multiple stable firing states, i.e., the neural network can maintain a high firing state also without continuing external input due to a network architecture consisting of recurrently connected neurons. Transitions between such network states, also called attractor states, can be induced by external input, and represent working memory contents or active task rules. Simulations showed that the stability of these attractor states, and thus of task rule representations, depend on the dopamine state of the system and can consequently vary between persons. The Dual-State Theory predicts an antagonistic relationship between cognitive flexibility and cognitive stability, as robust attractor states would facilitate the inhibition of distractors, but impair efficient task switching, while rather unstable attractor states would promote efficient transitions between representations but would also come at the cost of increased distractibility.
Based on the Dual-State Theory, a task paradigm was designed allowing for the simultaneous assessment of cognitive flexibility, in the sense of rule-based task switching, and cognitive stability, in the sense of inhibiting irrelevant distractors. Furthermore, a behavioral measure was developed to assess the individual attractor state stability, named spontaneous switching rate (SSR). In the first study of this work, this paradigm was tested in a sample of healthy human subjects using functional magnetic resonance imaging (fMRI). An overlapping fronto-parietal network was activated for both cognitive flexibility and cognitive stability. Furthermore, behavioral as well as neuroimaging results are in favor of an antagonistic relationship between cognitive flexibility and cognitive stability. A specific prefrontal region, the inferior frontal junction (IFJ), was implied to potentially contain the relevant neural networks mediating the transitions between attractor states, i.e., task rule representations, as its activity was modulated by the SSR such that persons with rather unstable attractor states activated it less during task switching while showing better performance. Most importantly, functional connectivity of the IFJ was antagonistically modulated by the SSR: more flexible persons connected it less to another prefrontal area during task switching, while showing higher functional connectivity during distractor inhibition.
In a second study, a larger human sample was assessed and further hypotheses derived from the Dual-State Theory on variability of neural processing were tested: we hypothesized that persons with high brain signal variability should have less stable network states and thus benefit on tasks requiring cognitive flexibility but suffer from it when the task requires a higher degree of cognitive stability. Furthermore, recent fMRI-research on brain signal variability revealed beneficial effects of higher brain signal variability on cognitive performance in general. Using a novel customized analysis pipeline to measure trial-to-trial fMRI-signal variability, we indeed found differential effects of brain signal variability: higher levels of brain signal variability were found to be beneficial for effectiveness, i.e., performance in terms of error rates, for both cognitive flexibility and stability. However, brain signal variability impaired the efficiency in terms of response times of inhibiting distractors, i.e., cognitive stability.
Due to further predictions of the Dual-State Theory concerning schizophrenia and the dopaminergic system, it was considered valuable to pursue a translational approach and thus allowing for the employment of animal models of psychiatric diseases. Consequently, in a first step the human paradigm was translated for a murine population using an innovative touchscreen approach. Results showed analogous behavioral effects in wildtype mice as before in healthy humans: the antagonistic relation between cognitive flexibility and cognitive stability was replicated and also for mice, a behavioral measure for the individual attractor stability was established and validated, named the individual spontaneous switching score.
To conclude, we established a novel paradigm assessing both cognitive flexibility and stability simultaneously showing an antagonistic relationship between these two cognitive functions on the behavioral level in two different species, which supports predictions from the Dual-State Theory. This was further underlined by evidence on the activation, functional connectivity and signal variability level in the human brain.
Kognition (im ursprünglich weit gefassten Verständnis) bezeichnet die Einheit von Denken und Handeln mit allen Aspekte der Wahrnehmung und Verarbeitung sinnlicher (aisthetischer) Impulse von der Empfindung über Wahrnehmen und Erkennen bis zum konkreten und reflektierten Handeln (Urteilen, Entscheiden, Tun). Der Prozess des Gestaltens (das Hervorbringen von Werken) als Akt der Poiesis ist eine Form des Erkennens im Tun. (Kunst-) Pädagogik vermittelt diese Form des Erkennens im Handlungsprozess durch eigenes, zunehmend eigenständiges Gestalten der Lernenden. „Was man lernen muss, um es zu tun, das lernt man, indem man es tut.“ (Aristoteles)
Gestalten lehren und lernen heißt, (akustische, audio-visuelle, verbale) Sprachen in ihrer Vielfalt und spezifischen Qualität zu lehren bzw. sich durch eigene Praxis anzueignen. Das Handwerk als Können (techné) sichert Handlungsoptionen, wobei Wissenschaft wie Gestaltungsunterricht durch Experiment und Spiel als potentiell ergebnisoffene Prozesse zu weder bekannten noch antizipierten Ergebnissen führen (können). Lehrende vermitteln neben dem Können und Wissen auch die Vielfalt möglicher Ausdrucksformen, sensibilisieren für das je Spezifische und schulen die Aufmerksamkeit für das je Eigene von Werken (Medien, Aufführungen, Darstellungen). Denn es gilt: „Sehr viele und vielleicht die meisten Menschen müssen, um etwas zu finden, erst wissen, das es da ist.“ (Georg Christoph Lichtenberg) Lernen ist dabei i.d.R. ein sowohl individueller wie ein sozialer (interpersonaler) Prozess. Der Mensch ist, lässt sich positiv formulieren, des Menschen Lehrer, auch wenn nicht alle Lehrenden Lehrer(innen) sein müssen. Daher sind Werkstätten und Studios als Begegnungsräume von zunehmender Bedeutung, zumal Digitaltechniken immer mehr zwischenmenschliche Kontakte und Kommunikationsakte technisch simulieren.
Digitale Techniken und Netzwerke sind (auch) Kontroll- und Steuerungsmittel, mit denen Menschen „fürsorglich“ bevormundet und systematisch entmündigt werden. Die Auseinandersetzung mit – den alle Lebensbereichen durchdringenden – digitalen Medien muss darum in der Lehrerausbildung gestärkt (!) werden, um mit technischen Werkzeugen und (digitalen) Medien qualifiziert und reflektiert umgehen und diese nach didaktischer Prämisse im Unterricht einsetzen – oder bewusst darauf verzichten zu können.
Die vorliegende Dissertation hatte das Ziel molekulare Mechanismen der Präeklampsieerkrankung aufzuklären. Bei PE handelt es sich um eine schwangerschaftsassoziierte Krankheit, die in 3 bis 5 % aller Schwangerschaften auftritt und eine der Hauptursachen für maternale und fetale Mortalität und Morbidität ist. Zudem haben PE-Patientinnen und ihre Kinder im späteren Leben ein erhöhtes Risiko für die Ausbildung kardiovaskulärer und hypertensiver Erkrankungen. Trotz langer und intensiver Forschung konnte die komplexe Pathogenese von PE noch nicht aufgeklärt werden. Im Rahmen der Promotion sollten neue Gene in der präeklamptischen Plazenta identifiziert und ihre Funktionen im Pathogeneseprozess der Krankheit untersucht werden. Dabei war es wichtig die Zusammenhänge der gestörten Prozesse zu verstehen um Mutter und Kind vor schwerwiegenden und langfristigen Folgeerscheinungen von PE zu schützen.
Mit dem durchgeführten Gen-Array konnte gezeigt werden, dass bei PE die Expression einiger Gene der Angiogenese-, der Invasions- sowie der Migrationsregulation verändert waren. Zudem konnten anhand von Deregulationen bei der SURVIVIN und BCL6 Expression zwei weitere Gene identifiziert werden, deren Funktionen in der präeklamptischen Plazenta bislang unbekannt waren.
Bei PE kam es im Vergleich zur gesunden Kontrolle zu einer verringerten Genexpression von SURVIVIN. Eine Veränderung des Proteinlevels konnte jedoch nicht festgestellt werden. Die Analyse der Survivin Funktionen zeigte, dass die Zellen der präeklamptischen Plazenta, die konstantem zellulärem Stress ausgesetzt sind, versuchen durch Aktivierung aller Überlebensmechanismen, wie einer Stabilisierung des anti-apoptotischen Proteins Survivin, ihr Überleben zu sichern und somit die Funktionalität des ganzen Organs zu gewährleisten. Als multifunktionelles Protein ist Survivin bislang vor allem als Apoptose-Inhibitor sowie als Partner des CPC mit Funktionen bei der Zellteilung bekannt. Die Untersuchungen ergaben, dass Survivin auch in Trophoblastenzellen für den einwandfreien Ablauf der Mitose verantwortlich ist, da es bei einer Depletion zu einem G2/M Arrest der Zellen sowie einer erhöhten Rate an Centrosomen Abberationen und congression Fehlern kam. Die vorliegende Arbeit zeigt zum ersten Mal, dass die Stabilisierung von Survivin bei Präeklampsie der Kompensation der gestörten Trophoblastenfunktionen dient indem die vermehrte Apoptose der Zellen verhindert und die Proliferation der Trophoblasten präzise gesteuert wird.
Im Rahmen der Dissertation wurden zudem die Funktionen von BCL6 bei Präeklampsie untersucht. BCL6 ist vorrangig durch seine Rolle bei der B-Zell Reifung und der T-Zell Regulation sowie als Onkogen bei B-Zell Lymphomen und auch bei Mammakarzinomen bekannt. Es konnte gezeigt werden, dass sowohl die Gen-, wie auch Proteinexpression von BCL6 in der präeklamptischen Plazenta erhöht sind. Bei einer Depletion von BCL6 kam es zu verminderter Proliferation der Trophoblasten mit G2/M Arrest und vermehrter Apoptose sowie reduzierter Invasions- und Migrationsfähigkeit. Eine erhöhte BCL6 Expression führte zu einer verminderten Expression der Fusionsregulatoren Syncytin 2, β-hCG und GCM1, woraus eine gestörte, reduzierte Fusionsfähigkeit der Trophoblasten resultierte. Dies bedeutet, dass die Expression von BCL6 präzise reguliert werden muss um die Trophoblasten zu Beginn der Schwangerschaft vor Apoptose und Zellzyklusarrest zu schützen und somit die Invasion und Plazentation zu ermöglichen. Kommt es im weiteren Verlauf zu einer Deregulation mit erhöhter BCL6 Expression, so resultiert daraus eine verminderte Trophoblastenfusion und Präeklampsie.
Zusammenfassend belegt die Arbeit, dass mit Survivin und BCL6 zwei weitere Regulatoren der PE-Pathogenese identifiziert und charakterisiert wurden. Im Rahmen der Promotion konnten die Funktionen bei der Regulation von Zellzyklus, Apoptose sowie Trophoblastenfusion und –invasion dargestellt werden. Weitere Untersuchungen sind jedoch notwendig um die Rolle von Survivin und BCL6 im ersten Schwangerschaftstrimester aufzuklären. Aufgrund ihrer wichtigen Rolle bei PE stellen Survivin und BCL6 neue Möglichkeiten zur Entwicklung von Therapieansätzen sowie zur Identifizierung prognostischer Marker für die Präeklampsieerkrankung dar.
Local protein synthesis has re-defined our ideas on the basic cellular mechanisms that underlie synaptic plasticity and memory formation. The population of messenger RNAs that are localised to dendrites, however, remains sparsely identified. Furthermore, neuronal morphological complexity and spatial compartmentalisation require efficient mechanisms for messenger RNA localisation and control over translational efficiency or transcript stability. 3’ untranslated regions, downstream from stop codons, are recognised for providing binding platforms for many regulatory units, thus encoding the processing of the above processes. The hippocampus, a part of the brain involved in the formation, organisation and storage of memories, provides a natural platform to investigate patterns of RNA localisation. The hippocampus comprises tissue layers, which naturally separate the principle neuronal cell bodies from their processes (axons and dendrites). Identifying the full-complement of localised transcripts and associated 3’UTR isoforms is of great importance to understand both basic neuronal functions and principles of synaptic plasticity. These findings can be used to study the properties of neuronal networks as well as to understand how these networks malfunction in neuronal diseases.
Here, deep sequencing is used to identify the mRNAs resident in the synaptic neuropil in the hippocampus. Analysis of a neuropil data set yields a list of 8,379 transcripts of which 2,550 are localised in dendrites and/or axons. Using a fluorescent barcode strategy to label individual mRNAs shows that the relative abundance of different mRNAs in the neuropil varies over 5 orders of magnitude. High-resolution in situ hybridisation validated the presence of mRNAs in both cultured neurons and hippocampal slices. Among the many mRNAs identified, a large fraction of known synaptic proteins including signaling molecules, scaffolds and receptors is discovered. These results reveal a previously unappreciated enormous potential for the local protein synthesis machinery to supply, maintain and modify the dendritic and synaptic proteome.
Using advances in library preparation for next generation sequencing experiments, the diversity of 3’UTR isoforms present in localised transcripts from the rat hippocampus is examined. The obtained results indicate that there is an increase in 3’UTR heterogeneity and 3’UTR length in neuronal tissue. The evolutionary importance of the 3’UTR diversity and correlation with changes in species,tissue and cell complexity is investigated. The conducted analysis reveals the population of 3’UTR isoforms required for transcript localisation in overall neuronal transcriptome as well as the regulatory elements and binding sites specific for neuronal compartments. The configuration of poly(A) signals is correlated with gene function and can be further exploit to determine similar mechanisms for alternative polyadenylation.
Usage of custom specified methods for next-generation sequencing as well as novel approaches for RNA quantification and visualisation necessitate the development and implementation of new downstream analytic methods. Library methods for data-mining transcripts annotation, expression and ontology relations is provided. Usage of a specialised search engine targeting key features of previous experiments is proposed. A processing pipeline for NanoString technology, defining experimental quality and exploiting methods for data normalisation is developed. High-resolution in situ images are analysed by custom application, showing a correlation between RNA quantity and spatial distribution. The vast variety of bioinformatic methods included in this work indicates the importance of downstream analysis to reach biological conclusions. Maintaining the integrability and modularity of our implementations is of great priority, as the dynamic nature of many experimental techniques requires constant improvement in computational analysis.
In vitro investigation of genes identified by genome-wide association studies of Parkinson's disease
(2014)
Evolutionary genetics of bears and red foxes over phylogenetic and phylogeographic time scales
(2014)
Climatic fluctuations during the Pleistocene (2.6-0.01 million years) have played an important role during evolution of many species. Cyclic range contractions and expansions had demographic consequences within species, provided environmental conditions for population divergence and speciation and enabled secondary contact and interspecific hybridization. These and other evolutionary processes have left genetic signatures in the genomes of affected organisms. Comprehensive and unbiased estimates of evolutionary processes can be obtained using genetic markers from different parts of the genome and by integrating population genetic and phylogenetic concepts.
Suitable for studies on evolutionary processes and patterns over different evolutionary time scales are bears (Ursidae) and foxes (Vulpes), which occupy a wide range of habitats and evolved during the past few millions of years. In my thesis, I therefore used bears and red foxes as study species to investigate the genetic variation within and between species and to obtain estimates of evolutionary relationships and divergence times of populations and species that I interpreted in a climatic context. Further, I investigated population genetic processes during the evolution of bears. My thesis includes three publications and one submitted manuscript, spanning different evolutionary time scales - from evolutionary relationships and processes among species (phylogenetic time scales, Publications I & II), among populations and closely related species in a geographical context (phylogeographic time scales, Publications II & III), to ongoing processes within species (population genetic time scales, Publication IV).
In Publication I (Kutschera et al. 2014, Mol Biol Evol 31(8):2004-2017), I studied bears at several nuclear markers from several individuals per species, complemented with markers from the Y chromosome. Using approaches based on a population genetic concept (coalescent theory) I obtained a species tree with divergence time estimates. Further, I studied two evolutionary processes in bears, interspecific gene flow and incomplete lineage sorting (ILS). This study contributed to the growing evidence that population genetic processes can be relevant on time scales up to several millions of years.
In Publication II (Hailer, Kutschera et al. 2012, Science 336(6079):344-347), we complemented previous mitochondrial (mt) DNA-based inference of the evolutionary history of polar and brown bears with nuclear DNA. Coalescence-based species tree analyses of multiple nuclear markers from several individuals per species placed polar bears as sister lineage to brown bears and their divergence time to about 600 thousand years ago (ka). This contrasted previous mtDNA-based inference. We explained this discrepancy between mtDNA and nuclear DNA with interspecific gene flow between polar and brown bears.
In Publication III (Kutschera et al. 2013, BMC Evol Biol 13:114), I studied range-wide phylogeographic events and their timing in red foxes. A synthesis of newly generated and published mtDNA sequences was analyzed using a coalescence-based approach with multiple fossil calibration points. Thereby, I validated the identity and geographic distribution of several red fox lineages and showed that red foxes colonized North America and Japan several times independently during the late Pleistocene (126-11 ka) and around the last glacial maximum (26.5-19 ka). In a comparison of my results from red foxes to brown bears and grey wolves, I identified similar phylogeographic patterns.
In Publication IV (Kutschera et al., submitted to Biol Conserv), I found similar levels of genetic variability in vagrant polar bears that had reached Iceland compared to established subpopulations from across the range. Based on climate projections reported by the Intergovernmental Panel on Climate Change in 2014, polar bear habitat will markedly decline and become increasingly fragmented within the next decades. Dispersal will play an important role by connecting isolated subpopulations, thereby maintaining genetic diversity levels. My results indicate that vagrants could stabilize genetic variability when immigrating into established subpopulations.
In conclusion, my thesis provided a deeper understanding of evolutionary genetic processes and patterns and their timing in bears and red foxes in a climatic context, which can have conservation implications. Further, I showed that processes like ILS and interspecific gene flow can be relevant over different time scales and are important aspects of evolutionary history. Thereby, my thesis contributed to the knowledge on the evolutionary history of several carnivore species and on evolutionary processes acting within and between closely related species.
Panama is a megadiverse country that together with Costa Rica constitutes Lower Central America (LCA). Western Panama's Cordillera Central accounts for the eastern part of the LCA highlands shared between these countries. The aim of the present study is to compile the most complete and updated picture possible of the taxonomy, diversity, and distribution of reptiles that occur from 500 m asl upwards along the Talamanca and Tabasará ranges. These two continuous mountain ridges account for the western two-thirds of the Cordillera Central between the Costa Rican border and 81°W Including specimens collected four own research travels, I morphologically examined more than 1800 specimens, analyzed 16S and/or COI barcodes of 300 specimens, and performed a thorough search in literature and databases to obtain locality records for specimens and species occurrences. My complete occurrence dataset comprises 14620 georeferenced occurrence records in three quality categories. Conceivable occurrences of species not yet documented from a given area are evaluated on the basis of existing data either as "plausible" or "possible". I provide all datasets which I generated for this study in Appendices. The previously published descriptions of Dactyloa ginaelisae Lotzkat, Hertz, Bienentreu & Köhler 2013, Norops benedikti (Lotzkat, Bienentreu, Hertz & Köhler 2011), Sibon perissostichon Köhler, Lotzkat & Hertz 2010, and Sibon noalamina Lotzkat, Hertz & Köhler 2012 are included in the present work. In the course of integrative taxonomic analyses, I classify 15 genealogical lineages revealed by DNA barcoding within 7 anole species as Deep Conspecific Lineages (DCLs) because they lack consistent morphological differences to their nominal conspecifics. I provisionally classify 18 mitochondrial lineages found within six other anole species as Unconfirmed Genealogical Lineages (UGLs) pending adequate analyses of their morphological variation. I regard the two additional UGLs Celestus sp. and Geophis sp. and the two Confirmed Genealogical Lineages (CGLs) Lepidoblepharis sp. 1 and 2 to represent undescribed species. My taxonomic analyses yield the hitherto most comprehensive survey of the variability exhibited by dozens of reptile species in western Panama. The 16S and/or COI barcodes I provide represent 65 species recognized herein and constitute the first DNA barcode reference library for LCA reptiles. The reptile fauna of Panama comprises 265 species, including the four UGLs and CGLs mentioned above and characterized for the first time in this study, as well as Dendrophidion crybelum Cadle 2012 whose presence in the country I consider plausible. My occurrence dataset reveals that 160 of these species have been documented to occur in my study area. Adding the 20 species whose occurrence therein I consider plausible, I report the total species richness of the Talamanca and Tabasará ranges as comprising 180 species representing 81 genera in 25 families. With 178.8 species per 10 000 km2, the relative species richness of the area is extremely high even in a tropical context. In view of their overall documented distribution, I regard the presence of 27 additional species in my study area as possible. For the 180 species occurring in my study area I provide standardized species accounts that, together with the taxonomic results, for the first time permit the doubtless identification of all 180 species, and illustrate 168 of these with color photographs. Concerning biogeography, my georeferenced dataset yields noteworthy distribution extensions for many species. Moreover, I present the hitherto most comprehensive, detailed, and reproducible assessments of the distribution patterns, historical origins, and conservation as well as of the occurrence among physiographic regions, climatic and altitudinal belts, political subdivisions, and protected areas, for my study area's reptile fauna. With 65 species, more than a third of the fauna is endemic to LCA. Among these, 42 Talamancan highland endemics are restricted to the LCA highlands, in the case of 16 small-scale highland endemics with documented ranges spanning less than 100 km. I assess many of these endemics as endangered. The fact that several of these species do not occur in any protected area renders the establishment of additional conservation areas necessary, especially in the central Serranía de Tabasará. Distributional range boundaries shared among different clades of highland anoles indicate physiographic and climatic barriers that may have effected in situ speciation within these lineages. As the largest study on Panamanian reptile diversity assembled to date, the present dissertation considerably increases our knowledge on the reptiles along the Cordillera Central and beyond, and thus constitutes a solid basis for future studies.
Drought stress is one of the major abiotic factors diminishing crop productivity world wide. In the course of climate change, regions which already experience dry seasons nowadays will suffer from elongated drought periods and water shortage. These climatic changes will not only have an impact on the regional flora and fauna but also on the people inhabiting these areas. It is therefore of great importance to understand the reactions of plants to drought stress to help breeding and biotechnological approaches for the benefit of new robust cereal cultures growing under low water regimes. In this dissertation four grasses of the genus Panicum, P. bisulcatum (C3), P. laetum, P. miliaceum and P. turgidum (all C4 NAD-ME) were subjected to drought stress. The plants diverse reactions were investigated on a physiological as well as on a molecular level to deepen the understanding of drought stress responses. Drought stress was imposed for a species-specific period until a relative leaf water content (RWC) of ~50 % was reached in each grass. Physiological measurements were conducted on leaves with a RWC of ~50 % investigating chlorophyll a fluorescence parameters with a Plant Efficiency Analyzer (PEA) and gas exchange parameters like the photosynthesis rate and stomatal conductance with a Gas Fluorescence Chamber (GFS-3000). Subsequent molecular analysis were conducted on leaf samples taken (RWC = 50 %) analysing different proteins and the transcriptome of the Panicum species. The physiological measurements revealed a higher photosynthesis rate for the C4 grasses under drought stress with no significant differences between the C4 species. Also the water use efficiency was significantly higher in the C4 species in comparison to the C3 species independent from the water regime supporting results from the literature. The chlorophyll a measurements revealed the strongest adaptation to water shortage in the C4 species P. turgidum followed by the C3 species P. bisulcatum. It has been shown before (GHANNOUM 2009) that the C4 photosynthesis apparatus is more prone to drought stress than the C3 apparatus – despite the higher water use efficiency. Results also suggested that the great adaptation of P. turgidum to drought stress arose from its ability to recover from drought stress (all JIP test parameters showed no significant differences between control and recovery samples). The additional down-regulation of PS II but not of PS I under drought stress also helped the plant to endure times of water shortage and facilitated the recovery when water was available again. Protein analyses on the content of PEPC, OEC and RubisCO (LSU and SSU) revealed no changes. Dehydrin 1 in contrast was strongly up-regulated under drought stress and Summary 108 recovery in all four Panicum species. The stable content of the OEC protein was therefore not the catalyst of rising K peaks measured by chlorophyll a fluorescence and a reduced OEC activity was supposed. Transcriptomic analyses revealed a myriad of differentially regulated tags. Due to unsequenced genomes, tags could only be partially (8 % maximum for P. turgidum) annotated to their specific genes. Diverse methods were therefore used to annotate the most highly regulated tags to their genes and their products. Special emphasis was put on the regulation of five gene products confirming the regulation schemata from the HT-SuperSAGE analyses. Interestingly one protein – the NCED1 – was down-regulated under stress conditions, in contrast to results from the literature. It is therefore of great importance to investigate longer lasting drought to understand the full range of drought stress adaptation. Future genome sequencing projects might also include the Panicum species investigated in this dissertation and important gene candidates with no hits (maybe completely new to the research community) might help breeding and biotechnology approaches to produce more drought resistant crop species.
This study describes the Holocene sedimentary lagoonal deposition history, including event sedimentation and benthic foraminiferal analyzes, from about 10 kyrs BP until today. This is the first study describing the sedimentation of a Maldivian atoll lagoon in such detail. Thirty-nine sediment cores have been recovered from the deep Rasdhoo Atoll lagoon of the Maldives (4°N/73°W). Seventeen sediment cores were opened, described, and 296 sediment samples have been collected and analyzed. Different methods have been used to evaluate the coarse- and fine-grained carbonate components and a total of fifty-eight samples have been dated radiometrically by Beta Analytic Inc., Miami, Florida. In general, the Rasdhoo Atoll lagoon sediments can be divided into (1) a Late Pleistocene soil, (2) an early Holocene peat layer composed of mangrove deposits which mark the beginning inundation of the atoll lagoon by the rising Holocene sea-level at 10,320 ± 100 yrs BP, and (3) carbonate sediments starting to fill up the lagoon 7850 ± 140 yrs BP until today. The transition from peat to carbonate is characterized by a considerable hiatus. Six different carbonate sediment facies are classified by statistical analyses, listed in decreasing abundance:
(1) mollusk-coral-algal floatstone to rudstone (30%)
(2) mollusk-coral-red algae rudstone (23%)
(3) mollusk-coral-algal wackestone to floatstone (23%)
(4) mollusk-coral wackestone (13%)
(5) mollusk-coral mudstone to wackestone (9%)
(6) mollusk mudstone (2%)
Based on grain-sizes in combination with coral identification, the facies represent both lagoonal background sedimentation (mostly fine-grained sediments (matrix >50%)) and event sedimentation (coarse-grained sediment layers composing reefal components).
Six coarser grained layers in muddy background sediments of the Rasdhoo Atoll lagoon were interpreted as Holocene tsunami events, based on the increase of allochthonous skeletal material with shallow-water reef affinity such as fragments of shallow-water coral species, coralline red algae, and reef-dwelling foraminifera in these layers, as well as AMS dating:
• Event 1: 420 - 890 yrs BP (655 yrs BP)
• Event 2: 890 - 1560 yrs BP (1225 yrs BP)
• Event 3: 2040 - 2340 yrs BP (2190 yrs BP)
• Event 4: 2420 - 3380 yrs BP (2900 yrs BP)
• Event 5: 3890 - 4330 yrs BP (4110 yrs BP)
• Event 6: 5480 - 5760 yrs BP (5620 yrs BP)
Five of the six layers may be correlated to previously published tsunami events at adjacent coastal research sites. The mid-late Holocene atoll lagoon archive is incomplete though based on the assumption that major earthquakes at the Indonesian subduction zone generated more than six major tsunamis during the past 6.5 kyrs.
According to Gischler (2006), the sediments of the Rasdhoo Atoll lagoon can be divided into two areas: (1) a central to marginal deep lagoon with a lateral west-to-east gradient of sediment facies distribution, visible in sections <4 kyrs BP with sedimentary facies of mudstone to wackestone in the western part (e.g., cores 16, 18, and 34) and coarse-grained coral and algal-rich sediments in the eastern part of the lagoon (e.g., cores 30 and 31). (2) A northern enclosed and shallow area between the sand apron and the sand spit accumulating “sandy” sediments of wackestone facies (cores 2, 19, 25, and 26).
Comparing the sediment accumulation data of the lagoon with two reconstructed local sea-level curves, three different sequence-stratigraphical systems tracts are visible: (1) a lowstand systems tract (LST) >10 kyrs BP. Pleistocene brownish soil superposing subaerially exposed Pleistocene reef limestone. (2) A transgressive systems tract (TST) 10-6.5 kyrs BP. A peat layer marks the beginning of the inundation, and the carbonate sedimentation starts with very low sedimentation rates of 0.02 m/kyr. (3) A highstand systems tract (HST) 6.5-0 kyrs BP, further divided into three stages (6.5-3, 3-1, 1-0 kyrs BP). The sea-level rise slowed down, sedimentation rates are increasing continuously up to a maximum of 1.4 m/kyr, the sand spit developed some 4 kyrs BP, the lagoonal circulation got restricted, and the lateral west-to-east gradient of grain-size accumulation started. From 1-0 kyrs BP the sedimentation rates slowed down to modern mean sedimentation rates of 0.6 m/kyr.
Two cores, one core from the center of the lagoon (core 16) and one core from the northern margin of the lagoon (core 19), have been analyzed on diversity and assemblages of benthic foraminifera in high-resolution. The transitions of Ammonia spp. to a more even and diverse fauna marks a significant environmental change at 7.0 kyrs BP in core 16 (onset of a stable environment in the deep lagoon after the sea-level rise slowed down at HST stage 1) and at 4.0 kyrs BP in core 19. A continuing environmental change after 1.4 kyrs BP in core 16 caused the fauna to become more even, a recovery of diversity and a permanent decline of foraminiferal accumulation rate. The changes in the faunas at 4.0 kyrs BP and at 1.4 kyrs BP could be explained with the sand spit formation in the northwestern and western lagoon. The sand spit has apparently acted as an obstacle in lagoonal circulation and might have caused unstable environmental conditions due to a more rapid circulation at the shallow marine site of core 19 and a slowdown of bottom water circulation in the main lagoon (core 16) leading to higher residence times and to lower oxygen and higher nutrient concentrations.
Die vorliegende Arbeit vollzieht mithilfe problemzentrierter Interviews Schritte junger Berufsausbildungsabsolventen - hier Teilnehmer eines Zweigs der Benachteiligtenförderung, den ausbildungsbegleitenden Hilfen - von der allgemeinbildenden Schule in Beschäftigung nach. Die Arbeit ist in den Feldern Benachteiligtenforschung und Übergangsforschung angesiedelt.
Teil 2 der Arbeit gibt Aufschluss über die durch einen Kurzfragebogen ermittelten beruflichen Wege von 79 ausgewählten Untersuchungsteilnehmern der Prüfungsabschlussjahrgänge 2000 bis 2004 vom Ende der Schule bis zum Stichtag der Befragung.
Fragestellungen sind hier vor allem Wege in die Berufsausbildung, Ausbildungsverläufe, Prüfungsgeschehen, Übernahmeverhalten der Ausbildungsbetriebe, Zeiten von Arbeitslosigkeit, beruflicher Stand zum Befragungsstichtag von als benachteiligt wahrgenommenen Lehrabsolventen.
Teil 3 der Arbeit beschreibt das Berufseinstiegsgeschehen nach erfolgreichem Lehrabschluss, wie es sich aus der Sicht der Befragungsteilnehmer darstellt. Von 62 Teilnehmern liegen durch problemzentrierte Interviews Einschätzungen zu förderlichen und hinderlichen Faktoren beim Berufseinstieg vor. Aus diesen Einschätzungen werden in Teil 4 der Arbeit als Ergebnis so genannte Gewinner und Verlierer beim Berufseinstieg identifiziert.
In the past sixty years, excessive water consumption and dam construction have significantly influenced natural flow regimes and surface freshwater ecosystems throughout China, and thus resulted in serious environmental problems. In order to balance the competing water demands between human and environment and provide knowledge on sustainable water management, assessments on anthropogenic flow alterations and their impacts on aquatic and riparian ecosystems in China are needed.
In this study, the first evaluation on quantitative relationships between anthropogenic flow alterations and ecological responses in eleven river basins and watersheds in China was performed based on the data that could be obtained from published case studies. Quantitative relationships between changes in average annual discharge, seasonal low flow and seasonal high flow and changes in ecological indicators (fish diversity, fish catch and vegetation cover, etc.) were analyzed. The results showed that changes in riparian vegetation cover as well as changes in fish diversity and fish catch were strongly correlated with the changes in flow magnitude (r = 0.77, 0.66), especially with changes in average annual river discharge. In addition, more than half of the variations in vegetation cover could be explained by changes in average annual river discharge (r² = 0.63) and roughly 50 % changes in fish catch in arid and semi-arid region and 60% changes of fish catch in humid region could be related to alterations in average annual river discharge (r² = 0.53, 0.58).
In a supplementary analysis of this study, the first estimation on quantitative relationships between decreases in native fish species richness and anthropogenic flow alterations in 34 river basins and sub-basins in China was conducted. Linear relationships between losses of native fish species and five ecologically relevant flow indicators were analyzed by single and multiple regression models. For the single regression analysis, significant linear relationships were detected for the indicators of long-term average annual discharge (ILTA) and statistical low flow Q90 (IQ90). For the multiple regressions, no indicator other than ILTA has significant relationships with changes in number of fish species mainly due to collinearity. Two conclusions emerged from the analysis: 1) losses of fish species were positively correlated with changes in ILTA in China and 2) indicator of ILTA was dominant over other flow indicators included in this research for the given dataset. These results provide a guideline for the sustainable water resources management in rivers with high risk of fish extinction in China.
Within the nucleosynthetic processes of the slow neutron-capture reaction network (called the s process) the so called branching points, unstable isotopes where different nuclear reactions are competing, are important to understand . For modeling and calculating the nucleosynthesis and compare the resulting abundances to the observed ones, it is indispensable to know the branching ratios as well as the corresponding cross sections.
A great challenge in measuring those rates in experiments may be the radioactivity of the isotopes involved, which can make it nearly impossible to manufacture the needed targets. In addition, in stellar environments the excited states of isotopes can be in equilibrium with the ground state, affecting the half-lives and the branching ratios significantly. The isotope 152Eu is such a branching point, with neutron captures and β-decays competing. Those challenges were approached in the s405 experiment performed at the GSI Helmholtzzentrum für Schwerionenforschung GmbH: the challenge the challenge of the radioactivity can be approached by experiments carried out in inverse kinematics with radioactive beams, solving the problem of unstable targets. Also a reversed reaction was used to access the excited states of the studied isotope. The performed 152Sm(p,n)152Eu is a pioneering attempt to use those methods on heavy ions. The (p,n) reaction was used as a substitute for electron capture, the focus lies on reactions with low-momentum transfers, resulting in the emission of low-energy neutrons. The new developed low-energy detector array LENA was put to test for the fist time in the s405 experiment.
Die akute myeloische Leukämie (AML) ist eine klonale Erkrankung einer myeloischen Vorläuferzelle, welche nicht zur geregelten Selbsterneuerung und terminalen Differenzierung in der Lage ist. Es kommt zur Anhäufung von unreifen Zellen im Knochenmark und peripheren Blut. Häufig werden in AML-Patienten reziproke Chromosomentranslokationen wie t(6;9), t(8;21) und t(15;17) detektiert. Diese Translokationen führen zu Genfusionen und bilden die Fusionsproteine DEK/CAN, AML1/ETO und PML/RARα. In dieser Arbeit wurde DEK/CAN untersucht, das Fusionsprodukt der Translokation t(6;9).
Die t(6;9)-positive Leukämie zeichnet sich durch eine äußerst schlechte Prognose aus sowie einem Eintritt der Krankheit bereits im jungen Erwachsenenalter. Aus diesen Gründen wird die t(6;9)-positive Leukämie nach der neuen WHO-Klassifikation als eigene Entität geführt. Das leukämogene Potential des Fusionsproteins DEK/CAN wurde bereits nachgewiesen, der Mechanismus der Leukämieinduktion ist jedoch völlig ungeklärt.
Von den Leukämie-assoziierten Fusionsproteinen AML1/ETO und PML/RARα ist bekannt, dass sie mutierte Transkriptionsfaktoren sind und die lokale Zusammen-setzung chromatin-assoziierter Proteine beeinflussen. Durch die aberrante Rekrutierung von chromatin-modifizierenden Faktoren kommt es zur Deregulierung von differenzierungsrelevanten Genen. Ziel dieser Arbeit war es daher zu ermitteln, ob es sich bei DEK/CAN ebenso um einen aberranten Transkriptionsfaktor mit Einfluss auf das Chromatin handelt.
Dazu wurden zunächst folgende Grundeigenschaften eines Transkriptionsfaktors untersucht: nukleäre Lokalisation und Chromatinassoziation. Immunfluoreszenz-untersuchungen bestätigten eine nukleäre Lokalisation von DEK/CAN. Es zeigte sich dabei, dass die Fusion mit CAN eine Umverteilung von DEK zur Folge hat. Während DEK diffus im Zellkern verteilt ist, zeigt das Fusionsprotein ein punktiertes Muster. Anschließend wurde die Assoziation von DEK/CAN zum Chromatin mit Hilfe von Zellfraktionierungsexperimenten nachgewiesen. Dabei konnte DEK/CAN aus der gleichen nukleären Fraktion eluiert werden wie andere chromatin-assoziierte Proteine.
Es stellte sich daraufhin die Frage, ob DEK/CAN die epigenetische Maschinerie beeinflussen und möglicherweise Veränderungen von Chromatinmodifikationen verursachen kann. Hierfür wurde die globale Verteilung der Histonmethylierungen H3K9me3, H3K27me3, H3K4me2 und H4R3me2 in An- und Abwesenheit von DEK/CAN untersucht. Es stellte sich heraus, dass DEK/CAN die Verbreitung von H4R3me2 maßgeblich beeinflusst. Histonmethylierungen regulieren das Expressionsniveau der gebundenen DNA, weshalb DEK/CAN durch seine Wirkung auf H4R3me2 die Deregulierung tumorrelevanter Gene verursachen könnte.
AML-assoziierte Fusionsproteine verändern die lokale Zusammensetzung von chromatin-modifizierenden Faktoren, indem sie oligomerisieren und so mehr Inter-aktionsmöglichkeiten für chromatin-modifizierende Proteine schaffen. Eine Gemein-samkeit aller AML-assoziierten Fusionsproteine ist der Besitz einer Oligomeri-sierungsoberfläche. Die putative Coiled coil (CC)-Domäne von CAN wurde hinsichtlich ihres Einflusses auf das leukämogene Potential und der Fähigkeit zur Bildung von Oligomeren untersucht, denn auch beim APL-spezifischen Fusionsprotein PML/RARα ist eine CC-Domäne für die Akkumulation verantwortlich. Die Deletion einzelner Helices aus der putativen CC-Domäne von DEK/CAN führte im CFU-S12 Assay zur Reduktion der Kolonienbildung. Damit konnte gezeigt werden, dass die Integrität der putativen CC-Domäne für den proliferationsstimulierenden Effekt von DEK/CAN auf das Kompartiment der Stammzellen notwendig ist. Eine Funktion als Oligomerisierungsoberfläche wurde für die CC-Domäne jedoch ausgeschlossen.
DEK ist ein nukleäres Phosphoprotein mit vielfältigen Funktionen, die unter anderem durch seinen Phosphorylierungsstatus gesteuert werden. Um die Relevanz der Phosphorylierungsstellen für das leukämogene Potential von DEK/CAN zu ermitteln, wurden DEK- und DEK/CAN-Mutanten erstellt, die nur partiell phosphorylierbar sind. Tatsächlich zeigte ein CFU-S12 Assay, dass die Mutation dieser Phosphorylierungsstellen zur Reduktion der Milzkolonienzahl und damit zur Aufhebung des leukämogenen Potentials führt. Außerdem hebt die Mutation der Phosphorylierungsstellen den DEK-vermittelten Effekt der Apoptoseresistenz auf.
Mit dieser Arbeit wurde durch Chromatinuntersuchungen und Struktur-Funktions-analysen ein Beitrag zur Entschlüsselung des leukämogenen Mechanismus von DEK/CAN geleistet.
Dresden wird in der Kunstgeschichte vor allem mit zwei Aspekten assoziiert. Zum einen mit der Stilepoche des Barock unter der Regentschaft August des Starken zu Beginn des 18. Jahrhunderts und zum anderen mit dem Expressionismus zu Beginn des 20. Jahrhunderts, der hier seinen Ausgangspunkt durch die Künstlervereinigung „Brücke“ fand. Doch eine Strömung, die viele Künstler in ihren Bann zog, bevor sie sich den aufkommenden Tendenzen der Avantgarde zuwandten wird heute kaum mehr mit Dresden in Verbindung gebracht: der Japonismus.
Ausgangspunkt der hier vorliegenden Dissertationsschrift geht der Frage der Bedeutung der japanischen Kunst und des Japonismus in Dresden am Ende des 19. Jahrhunderts nach. Aus der Fülle von historischen und künstlerischen Belegen, welche sich trotz der einschneidenden Ereignisse in der Dresdner Geschichte noch feststellen lassen, kann das Ergebnis abgeleitet werden, dass der Japonismus in Dresden am Ende des 19. Jahrhunderts eine so bedeutende und systematische Rolle im Kunstschaffen spielte, dass man Dresden als ein Zentrum des Japonismus in Deutschland bezeichnen kann. Die Auseinandersetzung mit japanischen und japonistischen Einflüssen sowie deren Rezeption und Verarbeitung war dabei auch instrumental für die Ebnung neuer Wege in der Dresdner Kunst- und Kulturlandschaft. Der Japonismus des späten 19. Jahrhunderts wurzelte, neben den neuen Einflüssen, welche ab Mitte des Jahrhunderts auf Europa wirkten, auch in der barocken Chinamode des 17. und 18. Jahrhunderts. Es ist ein weiteres Spezifikum des Japonismus in Dresden, dass diese Wurzel, deren Einfluss in dieser Arbeit auch aufgezeigt werden konnte, hier dank der Sammlungs- und Bautätigkeit unter dem sächsischen Kurfürsten August des Starken besonders stark ausgeprägt ist.
Das Thoraxtrauma beim Kind
(2014)
Die vorliegende Studie soll einen Überblick geben über Epidemiologie, Unfallursachen, Verletzungsmuster, Therapie und Outcome von Kindern mit thorakalen Verletzungen und einen Vergleich zwischen kindlichen Traumapatienten mit und ohne thorakaler Beteiligung ermöglichen.
Hierfür wurden zwischen September 2002 und Juli 2006 alle Schockraumpatienten der Klinik für Unfall-, Hand- und Wiederherstellungschirurgie der Johann Wolfgang Goethe-Universität Frankfurt am Main mittels eines standardisierten Schockraumprotokolls („TraumaWatch“) prospektiv erfasst. Die Dokumentation der Daten im Schockraum erfolgte durch einen unabhängigen Dokumentationsassistenten zeitgleich mittels Tableau-PC. Die Verlaufsdaten der Patienten wurden durch retrospektive Auswertung der Patientenakten erhoben und tabellarisch erfasst. In die Studie eingeschlossen wurden alle Patienten bis einschließlich dem 17. Lebensjahr, die lebend eingeliefert wurden und nicht direkt im Anschluss an die Schockraumdiagnostik wieder nach Hause entlassen werden konnten. Insgesamt erfüllten 256 Patienten die Einschlusskriterien. Für die Auswertung wurden zwei Gruppen gebildet: Gruppe A umfasste alle Kinder mit Thoraxtrauma (n = 46), Gruppe B alle Kinder, bei denen keine thorakale Beteiligung vorlag (n = 210).
In beiden Gruppen waren Jungen mit 69,6 % bzw. 64,8 % häufiger betroffen als Mädchen. Das Durchschnittsalter lag in Gruppe A mit 12,4 ± 4,9 Jahren signifikant höher als in Gruppe B mit 8,0 ± 5,2 Jahren. Es handelte sich fast ausschließlich um stumpfe Traumen (95,7 % bzw. 95,2 %). Verkehrsunfälle stellten in beiden Gruppen die häufigste Unfallursache dar, kamen in Gruppe A jedoch signifikant häufiger vor (65,2 % vs. 35,2 %). An zweiter Stelle lagen in beiden Gruppen Stürze, wobei in Gruppe A Stürze aus großer Höhe häufiger vorkamen. Beim Thoraxtrauma stehen demnach Unfallmechanismen mit massiverer Gewalteinwirkung im Vordergrund.
Die häufigste Thoraxverletzung war die Lungenkontusion (56,5 %), gefolgt vom Pneumothorax (34,8 %). Ein isoliertes Thoraxtrauma wurde selten beobachtet (4,3 %); die häufigste Begleitverletzung stellte das Schädel-Hirn-Trauma dar (71,7 %). Auch in Gruppe B war das Schädel-Hirn-Trauma die häufigste Verletzung (54,3 %), gefolgt von Extremitätenverletzungen (37,6 %). Verletzungen des Abdomens und Beckens wurden in Gruppe A signifikant häufiger gesehen.
Der mittlere ISS lag in Gruppe A mit 26,7 ± 15,8 signifikant höher als in Gruppe B mit 8,1 ± 6,8. Damit ist das Thoraxtrauma ein Marker für eine hohe Verletzungsschwere.
Die mittlere initiale GCS als Marker für den neurologischen Status war in Gruppe A signifikant niedriger als in Gruppe B (9,4 ± 5,1 vs. 13,0 ± 3,7). Somit treten schwere Schädel-Hirn-Traumata bei Kindern häufiger in Zusammenhang mit einem Thoraxtrauma auf.
Die Letalität war in Gruppe A höher als in Gruppe B (6,5 % vs. 1,9 %). Bei den Todesursachen stand in beiden Gruppen das Schädel-Hirn-Trauma im Vordergrund.
Sowohl die mittlere Intensivliegezeit (8,0 ± 8,1 Tage vs. 1,9 ± 5,0 Tage) als auch die Gesamtdauer des stationären Aufenthalts (13,6 ± 9,7 Tage vs. 7,9 ± 9,6 Tage) waren in Gruppe A signifikant länger als in Gruppe B. Kinder mit Thoraxtrauma mussten häufiger beatmet werden als Kinder ohne Thoraxtrauma (76,1 % vs. 26,7 %); die mittlere Beatmungsdauer war signifikant länger (5,2 ± 4,8 Tage vs. 2,7 ± 3,7 Tage). Eine präklinische Intubation war in Gruppe A ebenfalls signifikant häufiger erforderlich als in Gruppe B (56,5 % vs. 15,2 %). Kinder mit Thoraxtrauma wurden signifikant häufiger operativ versorgt (68,9 % vs. 42,9 %); unfallchirurgische Operationen standen in beiden Gruppen im Vordergrund. Komplikationen wurden in Gruppe A signifikant häufiger gesehen (52,2 % vs. 12,9 %); die häufigste Komplikation war in beiden Gruppen die respiratorische Insuffizienz (39,1 % vs. 5,2 %). In Gruppe A konnten signifikant weniger Patienten nach Hause entlassen werden als in Gruppe B (50,0 % vs. 89,0 %).
Das Thoraxtrauma stellt damit einen Marker für eine hohe Verletzungsschwere und das Vorliegen weiterer schwerer Verletzungen dar und kann somit als negativer prädiktiver Faktor angesehen werden, der die Mortalität und Morbidität bei kindlichen Traumapatienten beeinflusst.
Understanding major causes of biodiversity and range dynamics requires research on evolutionary processes under consideration of environmental changes. In my thesis, I investigated the spatio-temporal evolution of the Neotropical tree genus Cedrela from the Meliaceae family by studying its genetic diversity, taxonomy, colonization history, climatic niche changes and dynamics of species distributions. My results show that climatic and geological changes are major drivers of biological diversification in Cedrela.
In the interest of understanding the development of a multicellular organism, subcellular events must be seen in the context of the entire three-dimensional tissue. In addition, events that occur within a short period of time can be of great importance for the relatively long developmental process of the organ. Thus, it is required to capture subcellular events in a larger spatio-temporal scale context, which has been up to now a technical challenge. In developmental biology, light microscopy has always been an important tool. The dilemma of light microscopy, in particular fluorescence microscopy, is that molecules receive high light intensities that might change the conformation of molecules, which can have signaling or toxic effects. In Light Sheet-based Fluorescence Microscopy (LSFM), the energy required for a single recording is reduced by several orders of magnitude compared to other fluorescence microscopy techniques. During the last ten years, LSFM has emerged as a preferred tool to capture all cells during embryogenesis of the zebrafish Danio rerio, the fruit fly Drosophila melanogaster or recently the red flour beetle Tribolium castaneum for a period of several days. The motivation of this work was to gain new insights in developmental related processes of plant organs. The aim of this work was to establish a protocol for imaging plant growth over a long period of time using LSFM and perform comprehensive analyses at the cellular level. Plants have to cope with a variety of environmental conditions, therefore the conditions inside the microscope chamber had to be brought under control. The sample preparation methods and the standardized conditions at a physiological level allowed the study of gravity response, day-night rhythms, organ shape development as well as the intracellular dynamic events of the cytoskeleton and endosomal compartments in an unprecedented manner. Several of these projects were successfully published in collaborations with Prof. Jozef Šamaj (Palacký University Olomouc, Czech Republic), Prof. Niko Geldner (University of Lausanne, Switzerland), Prof. Malcom Bennett (University of Nottingham, UK) and Dr. Jürgen Kleine-Vehn (University of Natural Resources and Life Sciences, Austria). The main part of my work focused on the formation of lateral roots in Arabidopsis thaliana and was conducted in close collaboration with Dr. Alexis Maizel (University of Heidelberg, Germany). Previously, most experiments that describe lateral root formation have been performed on a small number of cells and for short periods of time. Capturing the complete process of lateral roots is an ambitious goal, because first, the primordium of a lateral root is located deep inside the primary root and imaging quality is impaired due to scattering of the overlaying tissue. Second, the process takes about 48 h, i.e. the plant has to be kept healthy for the whole period. Third, the amount of excitation light required for the spatio-temporal might have phototoxic effects that lead to a stop of growth at least in conventional microscopic techniques. In Arabidopsis embryogenesis, the sequence of cell divisions is relatively invariant. However, whether lateral root organogenesis follows particular cell division patterns has been unknown. The complete process of lateral root formation was captured from the first cell division until after the emergence from the main root. Images of a nuclei marker and a plasmamembrane marker were recorded every 5 min for a time period of up to 64 h. The positions and cell divisions of all cells were tracked manually. In collaboration with Alexander Schmitz (Goethe University Frankfurt am Main, Germany) and Dr. Jens Fangerau (University of Heidelberg, Germany), comprehensive analyses of the data were performed. A lateral root forms from initially 8-15 founder cells, arranged in a patch of 5-8 parallel files. The occurrence of new cell layers by periclinal divisions, as well as the sequence of layer generation was conserved and resembles the sequence suggested by Malamy and Benfey in 1997. Besides this stereotyped occurrence of periclinal divisions, radial divisions were found to appear stochastically, following no particular pattern. A large variability was also found in the contribution of founder cells and cell files to the final lateral root. In summary, the results suggest that a stereotyped pattern of cell divisions at particular developmental stages and a dynamically adapted control of cell divisions exist in parallel. Both properties allow a controlled but flexible development of the organ according to variations in cell topology and mechanical properties of the surrounding tissue. This work shows that LSFM, the sample preparation methods and controlled environmental conditions allow to capture and analyse the development of plants over several days at high resolution in an unprecedented manner.
Die randomisierte, dreiarmig kontrollierte Studie zu täglicher, peroraler Zusatzkost (ONS) bei Hämodialysepatienten (CHD) im Endstadium der Niereninsuffizienz (ESRD) über 6 Monate zeigte keine signifikanten Verbesserungen hinsichtlich folgender Nutritions-/Retentions- und Inflammationsparameter: Subjective Global Assessment (SGA); Body Mass Index (BMI); Querschnitt des Muskulus Iliopsoas,Oberarmumfang und Dicke des Unterhautfettgewebes (MRT); örperzellmasse und Phasenwinkel (Bioimpedanzanalyse BIA); Tumornekrosefaktor α (TNFα); Interleukin 1β und 6 (IL-1β und IL-6); C-Reaktives Protein (CRP). Der Querschnitt des Muskulus biceps brachii blieb in der Kontrollgruppe anfangs und zum Ende höher wie in den Interventionsgruppen. Der Serumkreatininwert der Interventionsgruppe mit HIV war anfangs geringer als in den übrigen Gruppen, die glomeruläre Filtrationsrate entsprechend besser, zum Ende waren diese Unterschiede nivelliert. Der Hauptbefund liegt in der hohen Mortalitätsrate der HIV-positiven Hämodialysepatienten (2 von 7 Pat., 28,6%), von denen beide im SGA als schwer mangel-/fehlernährt eingestuft wurden. Die Therapie eines Malnutritions-Infalmmations-Komplexes ist nicht allein durch orale Zusatzkost möglich. Weitere Studien müssen multimodale Konzepte zur Diagnose und zur Therapie erforschen. Hierzu kann perorale Zusatzkost ein einfach durchzuführendes Mittel als Teil der Behandlungsstrategie sein, zur erweiterten Diagnose kann die Bioimpedanzanalyse eine Möglichkeit sein, um den Teilaspekt der Nutritionskontrolle zu erfüllen.