610 Medizin und Gesundheit
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Institute
- Medizin (732)
- Biochemie, Chemie und Pharmazie (41)
- Biowissenschaften (22)
- Frankfurt Institute for Advanced Studies (FIAS) (21)
- Sportwissenschaften (21)
- MPI für Hirnforschung (14)
- Präsidium (14)
- Biochemie und Chemie (11)
- Psychologie und Sportwissenschaften (11)
- Ernst Strüngmann Institut (9)
Hintergrund. Die Achtung der individuellen Autonomie ist eines von vier medizinethischen Prinzipien, das im Kontext von Medizin und Forschung insbesondere in Bezug auf die informierte Einwilligung einer Person thematisiert wird. Menschen mit Demenz können aufgrund innerer oder äußerer Faktoren in ihrer Einwilligungsfähigkeit beeinträchtigt sein, was zu einer Einschränkung ihres Rechts auf Selbstbestimmung führen kann. Im diesbezüglichen Spannungsfeld zwischen Fürsorge und Autonomie soll Entscheidungsassistenz zur Ermöglichung selbstbestimmter Entscheidungen beitragen.
Zielrichtung der Arbeit. Ziel der vorliegenden Dissertation ist die Definition, Implementierung und Evaluation von Entscheidungsassistenzmaßnahmen für Menschen mit Demenz, um deren Autonomie in Entscheidungsprozessen zu unterstützen. Drei Teilprojekte umfassen die Ermittlung des internationalen Forschungsstands zu Entscheidungsassistenz bei Demenz, die Definition und Pilotierung von Unterstützungstools in der Praxis und die Analyse des individuellen Erlebens der vereinfachten Aufklärungsgespräche durch Menschen mit Demenz.
Methode. Im ersten Teilprojekt wurde eine am PRISMA-Standard orientierte systematische Literaturrecherche in Medline und PsycINFO durchgeführt. Die extrahierten relevanten Informationen wurden inhaltlich systematisiert. Aufbauend auf diesen Ergebnissen wurden im zweiten Teilprojekt konkrete Unterstützungstools definiert und in reale Aufklärungsgespräche (Lumbalpunktion) implementiert. Die Tools wurden in der Pilotierung in der Praxis sowie in einem iterativen Diskussionsprozess mit Experten weiterentwickelt. Im dritten Teilprojekt wurde das individuelle Erleben der Teilnehmer der vereinfachten Aufklärungsgespräche mittels problemzentrierter Interviews untersucht und die Daten einer qualitativen Inhaltsanalyse unterzogen.
Ergebnisse. Die Datenbankrecherche ergab initial 2348 Treffer. Nach Screenings der Titel, Abstracts und Volltexte konnten 11 Artikel eingeschlossen werden. Vier der eingeschlossenen Studien sind Interventionsstudien, die übrigen sieben qualitative Interviewstudien. Die identifizierten Unterstützungsmaßnahmen wurden zunächst den beiden Kategorien Interventionen und Strategien und anschließend unter Zuhilfenahme des Konzepts des Contextual Consents fünf komplexitätssteigernden Dimensionen einer Entscheidungssituation zugeordnet (individuelle, soziale, medizinische, informationelle und Folgendimension). Darauf aufbauend wurden im zweiten Teilprojekt acht Entscheidungsassistenzmaßnahmen abgeleitet: (1) Gesprächsstruktur, (2) Elaborierte klare Sprache, (3) Ambiente / Raumgestaltung, (4) Stichwortlisten, (5) Prioritätenkarten, (6) Visualisierung, (7) Vereinfachte schriftliche Einverständniserklärung sowie (8) Personenzentrierte Haltung des Entscheidungsassistenten (1-7: Tools, 8: Grundeinstellung). Die Tools zielen überwiegend auf eine Komplexitätsreduktion in der informationellen Dimension unter Berücksichtigung der fähigkeitsbezogenen und der bedürfnisbezogenen individuellen Dimension ab. Durch Anpassungen der Informationsdarbietung oder der kommunikativen Interaktion im Gespräch dienen sie mehrheitlich der Förderung des (Informations-) Verständnisses. Die Analyse der qualitativen Daten im dritten Teilprojekt zeigt, dass die Erfahrung der vereinfachten Aufklärungsgespräche durch drei übergreifende Themen gekennzeichnet ist. Die Kategorie Formalität versus Informationsgewinn illustriert die individuelle Bedeutung des Aufklärungsgesprächs für die Teilnehmer und deren Bewertung des Prozesses der informierten Einwilligung. Die Kategorie Wahrnehmung der Unterstützung skizziert die Bewertungen der angewandten Unterstützungstools durch die Teilnehmer. Die Kategorie Der Wahrheit ins Auge sehen müssen stellt dar, dass die erlebte Situation des vereinfachten Aufklärungsgesprächs wesentlich durch die Verdachtsdiagnose Demenz bestimmt ist, die im Rahmen aller Aufklärungsgespräche besprochen wurde.
Fazit. Bislang gibt es wenig empirische Forschung zu Entscheidungsassistenz für Menschen mit Demenz und Unterstützungsmaßnahmen werden überwiegend unsystematisch entwickelt und angewendet. Die Wirksamkeit einzelner Unterstützungsmaßnahmen kann aufgrund fehlender Interventionsstudien selten beurteilt werden. Unterstützungsmaßnahmen zielen überwiegend auf eine Komplexitätsreduktion in der Informationsdarbietung und im kommunikativen Interaktionsprozess ab, wobei sie kognitive Beeinträchtigungen und Interaktions-/ Entscheidungsbedürfnisse von Menschen mit Demenz berücksichtigen. Die definierten Tools können als erste konkret handhabbare Werkzeuge verstanden werden, die das strukturierte Leisten von Entscheidungsassistenz für Menschen mit Demenz erleichtern sollen. Sie sind übertragbar auf verschiedene Entscheidungssituationen. Eine Bewertung der Wirksamkeit der definierten Tools sollte in weiteren Entscheidungssituationen und mit größeren Stichproben weiteruntersucht werden. Die Ergebnisse der Evaluation liefern jedoch erste Hinweise darauf, dass einige Teilnehmer sich von einzelnen Tools unterstützt gefühlt haben und die anvisierte Komplexitätsreduktion in der informationellen Dimension in einigen Fällen erfolgreich war. Eine wesentliche Komplexitätssteigerung in der untersuchten Entscheidungssituation entstand durch die negative Emotionen auslösende Vermittlung einer potentiellen Demenzdiagnose (Folgendimension). Dieses Ergebnis impliziert, dass die definierte „verständnisfördernde Toolbox“ um Unterstützungsmaßnahmen zur emotionalen Entlastung von Menschen mit Demenz erweitert werden muss, da davon ausgegangen werden kann, dass vielfältige Entscheidungssituationen für Menschen mit Demenz emotional hoch belastend sind.
100 Jahre Dieter Janz
(2020)
The 20 April 2020 marks the centenary of Dieter Janz’s birth. This issue of Zeitschrift für Epileptologie is published in his honor with the aim of tracing the work of Dieter Janz over the last five decades and summarizing new findings on the Janz syndrome (Juvenile Myoclonic Epilepsy), which is named after him.
This study deals with 3D laser investigation on the border between the human lymph node T-zone and germinal centre. Only a few T-cells specific for antigen selected B-cells are allowed to enter germinal centres. This selection process is guided by sinus structures, chemokine gradients and inherent motility of the lymphoid cells. We measured gaps and wall-like structures manually, using IMARIS, a 3D image software for analysis and interpretation of microscopy datasets. In this paper, we describe alpha-actin positive and semipermeable walls and wall-like structures that may hinder T-cells and other cell types from entering germinal centres. Some clearly defined holes or gaps probably regulate lymphoid traffic between T- and B-cell areas. In lymphadenitis, the morphology of this border structure is clearly defined. However, in case of malignant lymphoma, the wall-like structure is disrupted. This has been demonstrated exemplarily in case of angioimmunoblastic T-cell lymphoma. We revealed significant differences of lengths of the wall-like structures in angioimmunoblastic T-cell lymphoma in comparison with wall-like structures in reactive tissue slices. The alterations of morphological structures lead to abnormal and less controlled T- and B-cell distributions probably preventing the immune defence against tumour cells and infectious agents by dysregulating immune homeostasis.
In Bone Tissue Engineering (BTE), autologous bone-regenerative cells are combined with a scaffold for large bone defect treatment (LBDT). Microporous, polylactic acid (PLA) scaffolds showed good healing results in small animals. However, transfer to large animal models is not easily achieved simply by upscaling the design. Increasing diffusion distances have a negative impact on cell survival and nutrition supply, leading to cell death and ultimately implant failure. Here, a novel scaffold architecture was designed to meet all requirements for an advanced bone substitute. Biofunctional, porous subunits in a load-bearing, compression-resistant frame structure characterize this approach. An open, macro- and microporous internal architecture (100 µm–2 mm pores) optimizes conditions for oxygen and nutrient supply to the implant’s inner areas by diffusion. A prototype was 3D-printed applying Fused Filament Fabrication using PLA. After incubation with Saos-2 (Sarcoma osteogenic) cells for 14 days, cell morphology, cell distribution, cell survival (fluorescence microscopy and LDH-based cytotoxicity assay), metabolic activity (MTT test), and osteogenic gene expression were determined. The adherent cells showed colonization properties, proliferation potential, and osteogenic differentiation. The innovative design, with its porous structure, is a promising matrix for cell settlement and proliferation. The modular design allows easy upscaling and offers a solution for LBDT.
Background: Recent advances in 3D printing technology have enabled the emergence of new educational and clinical tools for medical professionals. This study provides an exemplary description of the fabrication of 3D‐printed individualised patient models and assesses their educational value compared to cadaveric models in oral and maxillofacial surgery.
Methods: A single‐stage, controlled cohort study was conducted within the context of a curricular course. A patient's CT scan was segmented into a stereolithographic model and then printed using a fused filament 3D printer. These individualised patient models were implemented and compared against cadaveric models in a curricular oral surgery hands‐on course. Students evaluated both models using a validated questionnaire. Additionally, a cost analysis for both models was carried out. P‐values were calculated using the Mann‐Whitney U test.
Results: Thirty‐eight fourth‐year dental students participated in the study. Overall, significant differences between the two models were found in the student assessment. Whilst the cadaveric models achieved better results in the haptic feedback of the soft tissue, the 3D‐printed individualised patient models were regarded significantly more realistic with regard to the anatomical correctness, the degree of freedom of movement and the operative simulation. At 3.46 € (compared to 6.51 €), the 3D‐printed patient individualised models were exceptionally cost‐efficient.
Conclusions: 3D‐printed patient individualised models presented a realistic alternative to cadaveric models in the undergraduate training of operational skills in oral and maxillofacial surgery. Whilst the 3D‐printed individualised patient models received positive feedback from students, some aspects of the model leave room for improvement.
The way in which dendrites spread within neural tissue determines the resulting circuit connectivity and computation. However, a general theory describing the dynamics of this growth process does not exist. Here we obtain the first time-lapse reconstructions of neurons in living fly larvae over the entirety of their developmental stages. We show that these neurons expand in a remarkably regular stretching process that conserves their shape. Newly available space is filled optimally, a direct consequence of constraining the total amount of dendritic cable. We derive a mathematical model that predicts one time point from the previous and use this model to predict dendrite morphology of other cell types and species. In summary, we formulate a novel theory of dendrite growth based on detailed developmental experimental data that optimises wiring and space filling and serves as a basis to better understand aspects of coverage and connectivity for neural circuit formation.
The novel coronavirus (SARS-CoV-2), identified in China at the end of December 2019 and causing the disease COVID-19, has meanwhile led to outbreaks all over the globe, with about 571,700 confirmed cases and about 26,500 deaths as of March 28th, 2020. We present here the preliminary results of a mathematical study directed at informing on the possible application or lifting of control measures in Germany. The developed mathematical models allow to study the spread of COVID-19 among the population in Germany and to asses the impact of non-pharmaceutical interventions.
Background: The aim of this pilot study was to analyze postures during the work of neurologists with respect to their occupational activities.
Methods: A total data material of 64.8 h (3885.74 min) of nine (three m/six f) neurologists (assistant physicians) was collected. Kinematic data were collected using the CUELA system (electro-goniometry). In addition, the occupational tasks performed on-site were subject to a detailed objective activity analysis. All activities were assigned to the categories "Office activities" (I), "Measures on patients" (II) and "Other activities" (III). The angle values of each body region (evaluation parameters) were evaluated according to ergonomic ISO standards.
Results: Only 3.4% of the working hours were spent with (II), while 50.8% of time was spent with (I) and 45.8% with (III). All tasks of category (II) revealed an increased ergonomic risk to the head, neck, trunk and back areas. During category (I) especially neck and back movements in the sagittal plane showed higher ergonomic risk levels.
Conclusion: Despite frequently performed awkward body positions in (II), the ergonomic risk is considered as rather low, since the percentage time share totaled only 3.4%. As a result, "Office activities" have been detected as high predictor to cause stress load on the musculoskeletal system in the daily work of neurologists.