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- University of Würzburg - Rudolf Virchow Center for Integrative and Translational Bioimaging
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environment and receive training in complementary experimental approaches in cellular and synaptic neuroscience. The project combines primary neuronal cultures, mouse models, advanced fluorescence imaging
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, electrophysiology, and live-cell imaging Apply and further develop methods for high-resolution and super-resolution fluorescence microscopy Analyze in vivo models, particularly using slice electrophysiology, protein
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Supervisor: Dr Guiping Wang Course start date: 1st October 2027 Project details For further information about the research group, please visit our website at https://www.cruk.cam.ac.uk/research
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University of Würzburg - Rudolf Virchow Center for Integrative and Translational Bioimaging | Oettingen in Bayern, Bayern | Germany | 2 months ago
proteins using a wide range of imaging methods. The Rudolf Virchow Center is looking for a PhD student (f/m/d) (Bioimaging / Biophysics) in the field of whole organ fluorescence imaging Antibodies
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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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. Apply HiBiT-based and fluorescence-based mitochondrial-tracing approaches, together with live-cell and confocal imaging, to quantify intercellular mitochondrial transfer. Investigate the relationship
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communication skills in English (verbal and written) Preferred qualifications · Experience with fluorescence or live-cell imaging · Hands-on experience with microfabrication and microfluidics · Familiarity with
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, establishing phage-host systems, performing quantitative infection assays under defined physiological conditions, and using fluorescence or time-lapse microscopy to link pre-infection state to infection outcome
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 2 months 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