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screening, computational models, and systems biology to elucidate the mechanisms of drug interactions in complex biological systems, with a particular focus on infectious disease. Candidates with experience
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biophysical (e.g., FRET, ITC, SPR) and structural techniques (e.g. cryoEM) to characterize protein interactions Background in membrane biology or lipid biochemistry. Knowledge of neuroscience or synaptic
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systems. Successful candidates will join a highly interactive research environment at ZMBH. They will work within a collaborative setting that bridges all levels, from fundamental molecular biology to
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trainings to reduce somatic symptom distress and to translate these trainings to a mobile application. The postdoctoral candidate will join the Research Group "Brain-Body-Interaction" and the Clinical
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embedded in the ERC-funded project PhagoPhoRe, which aims to decode the cellular and molecular language of photosymbiotic interactions. By focusing on the interplay of symbiotic nutrient cycling and host
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of Parkinson’s Disease. As part of the consortium, you will apply stem cell models to investigate how pesticides and toxicants exert toxicity on human neurons, and you will interact closely with toxicologists
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research group to study novel aspects of immunometabolism, tumor-immune cell interactions at the primary tumor and systemic sites in pancreatic cancer. Our state-of-the art research program utilizes
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approaches with automated longitudinal behavioral analysis. Close interactions with electrophysiology and neurophysiology units at the center will enable functional characterization of circuit dysfunction
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electrophysiology (e.g., Neuropixels) Analyze and integrate multimodal datasets to link synaptic interactions to visual response properties Contribute to a collaborative lab culture, including mentoring students and
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problems in biomedical field, interact with world class scientists, and gain experiences and develop skillsets for their next career stage. The computational biologist is expected to develop new