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disease progression. However, the mechanisms by which peripheral neural circuits detect changes in tissue state and instruct immune cell function remain poorly understood. The successful candidate will lead
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optical technologies to study mechanisms of cell surface signaling, cancer neuroscience, and protein engineering, integrating molecular biology, cell biology, and systems neuroscience approaches. To support
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Your position We combine mouse tumour models, immunology, molecular biology, flow cytometry, imaging and single-cell approaches to investigate how neurons, immune cells and stromal cells communicate
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biophysics lab aiming to understand how fluid flows and mechanical properties emerge from the collective activity of molecular assemblies in living cells. We also investigate the biophysical mechanisms by
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results-oriented team player. Ideal profile includes following competencies and experience: Strong programming skills, deep statistical knowledge and a proven track record with machine learning Solid
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environments; and (2) amino acid fermentation requires the balancing of oxidative and reductive half-reactions, with Stickland metabolism partitioned among community members rather than encoded and expressed
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radioligand-resistant cell line panels Clinical patient tissue samples for mechanistic validation via multiplexed immunohistochemistry and single-cell sequencing Collaborative Environment You will join an
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of SATURNA, namely Language Models for RNA sequences, Graph representation learning and generative models, Knowledge-Augmented RNA modeling, Computational RNA biology and Experimental stem cell biology and RNA
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of cooperative effects in charge transport, proton dynamics and electrochemical conversion in solids and at electrochemical interfaces. Your tasks The research focuses on experimental investigations and theory
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and international research environment, the Communauté d’études pour l’aménagement du territoire (CEAT) at EPFL is recruiting a postdoctoral researcher in urban verticality, Earth Observation