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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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science, chemistry, or related fields, with a strong publication record. Prior experience in flow-cell electrochemistry, in-situ spectroscopy (UV-Vis, Raman, FTIR), or 3D printing and polymer processing is
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related fields, with a strong publication record. Prior experience in flow-cell electrochemistry, in-situ spectroscopy (UV-Vis, Raman, FTIR), or 3D printing and polymer processing is desired. Good spoken
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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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pathways for glass, polymers, encapsulants, backsheets, silicon cells, metals and composites, including their potential for reuse, remanufacturing and high-value recycling. You will develop material
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specific genomic alterations reprogram the crosstalk between cancer cells and immune cells. We offer The position provides an exciting opportunity to further develop and expand these lines of research, and
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project The Chair of Numerical Modelling and Simulation at EPFL is dedicated to the design and analysis of numerical algorithms for partial differential equations. Our research is oriented towards
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of the project is to elucidate molecular intra- and extracellular mechanisms of signaling modulating myeloid cells' immune responses. The project is supported by Innosuisse and has a translational goal aiming to