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. Your work includes: establishing and using isogenic iPSC-derived myelinating organoids as a human in vitro disease model; testing AAV variants and assessing their effects on myelination and
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contribute to the development of state-specific clinical guidelines. You will also write scientific articles and contribute to dissemination activities. Throughout the project, you will work in close
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We are a leading international university where scientific curiosity meets a hands-on mindset. We work in an open and collaborative way with high-tech industries to tackle complex societal
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plasticity. In this PhD project, you will study whether daily smell training can improve olfactory and cognitive functioning, and whether these effects can be strengthened by adding multisensory immersive
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description Fundamental biomedical research and clinical impact come together in this four-year PhD project within the TRANSPORT programme. As a PhD candidate, you will work on the development of an innovative
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Hospital Tübingen (Eberhard Karls University of Tübingen), Germany. You will be embedded in the POLARIS consortium and work with experts in leukodystrophy, paediatric neurology, developmental psychopathology
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of liquid biomarkers for leukodystrophies. You will work with iPSC-derived disease models and patient samples, generate and analyse multi-omics data, and help identify biomarkers that can support diagnosis
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resource acquisition traits into the mechanistic ecosystem model PCLake and assess consequences for ecosystem structure and functioning. General project description This PhD position is part of the SNF-Lead
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investigate questions concerning, for example, the analysis of PDE-constrained inverse problems, properties of wave equations and their solution operators, and the conditions under which relaxed formulations
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(e.g., taxonomy, evolution, ecology, and geology). You will receive dedicated supervision from experienced researchers and work closely with several international experts and collaborators with whom