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, scATAC-seq), spatial transcriptomics and high-throughput imaging, thus a keen interest in learning single cell/spatial data analysis is critical. Your profile: You hold a PhD in Biology, (Bio)medical
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objective of this project is to compare the modern philosophy of Bildung and the contemporary paradigm of the Learning Society (LS) by systematically analyzing their homological structures. Through
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: •A PhD in biomedical sciences, biomedical or bioengineering sciences, or a closely related field, with a strong quantitative background and an affinity for biological processes. •A solid background in
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of this project is to compare the modern philosophy of Bildung and the contemporary paradigm of the Learning Society (LS) by systematically analyzing their homological structures. Through this comparison, we aim
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knowledge of one or all of the following: Measurement theory Quantum optics Quantum dynamics Stochastic processes Your profile Strong analytical and numerical skills High-quality PhD in Theoretical Physics
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Parkinson’s biology. Supervise junior colleagues, contribute to grant writing, and disseminate findings through high-impact publications. Profile PhD in neuroscience, immunology, stem cell biology, or related
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writing, and disseminate findings through high-impact publications. Profile PhD in neuroscience, immunology, stem cell biology, or related discipline. Proven expertise in Parkinson’s disease models and iPSC
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hub investigating the critical roles of ion channels—particularly the TRP superfamily—in physiological and pathological processes. Our interdisciplinary approach spans from foundational
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critical roles of ion channels—particularly the TRP superfamily—in physiological and pathological processes. Our interdisciplinary approach spans from foundational electrophysiology to translational models
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brain xenotransplantation, mouse transgenesis, in vivo mouse brain imaging, and ex vivo human brain recordings. See more in selected references from the lab: Libé-Philippot et at al. Cell (2023) 186(26