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engineering, or cell signaling (Preferred) Experience with fluorescence microscopy, including live cells and fixed cells imaging, fluorescence in situ hybridization, and/or flow cytometry. (Preferred) Ability
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sectioning, immunohistochemistry/fluorescence, imaging Mouse colony management, including breeding strategy, genotyping, experimental cohort generation, and tissue collection for molecular and histological
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 1 month ago
researcher and collaborators, the student will combine mammalian cell biology, molecular biology, quantitative fluorescence imaging, and biochemistry to uncover how CtBP polymerization regulates
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on developing probabilistic latent-variable methods for large and structured biological data, with applications in genomics, spatial transcriptomics, and fluorescence imaging. High-dimensional and structured
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peer-reviewed journals. Experience in one or more of the following: Ca²⁺ imaging or fluorescence microscopy Electrophysiology Gastrointestinal physiology Neuroscience Molecular and cellular biology Mouse
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cultures, stem cells, and cancer cell lines), tissue processing and histology, immunohistochemistry and immunoassays (e.g. ELISA), and microscopy techniques including fluorescence and confocal imaging
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tools for imaging and controlling neural activity. For examples of our recent work, see our publications in Cell and Nature Neuroscience (https://doi.org/10.1016/j.cell.2022.07.013; https://doi.org
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physics and biology. The institute also benefits from state-of-the-art core facilities, particularly in microscopy (Microscopy Rennes Imaging Center, MRic, https://microscopie.univ-rennes1.fr/ ). Rennes is
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fundamental problem: techniques that offer rich molecular-level information, such as fluorescence microscopy, require chemical labelling and struggle with long-term or non-invasive imaging, while label-free
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. Our original approach relies on an optical encoding and sequencing, through the development of fluorescently-encoded synthetic polymers, in combination with a detection technique for a fast decoding of