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support for Princeton University faculty and student research utilizing state-of-the-art flow cytometry and fluorescence activated cell sorting (FACS) techniques and instrumentation. We currently support
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The Krienen lab (krienenlab.org) at the Princeton Neuroscience Institute is looking for a skilled bioinformatician to contribute to single cell genomics-based projects. The successful candidate will
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cell genomics as part of an international consortium to comprehensively map cell types in mammalian brains. This position provides an excellent opportunity to further develop research skills in
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cell genomics as part of an international consortium to comprehensively map cell types in mammalian brains. This position provides an excellent opportunity to further develop research skills in
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protein as they move through biomolecular condensates within living cells, to understand condensate function and dysfunction in cell physiology and disease. We seek a PhD level scientist who is interested
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animal and safety protocol in coordination with the principal investigator. ⢠Assist with lab experiments including tissue dissections, cell isolations, flow cytometry, imaging, cell culture. Any new
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, assist with IACUC and IBC protocols. Work efficiently and collaboratively to assist experiments, including set up timed-breeding, tissue dissections, cell isolations, flow cytometry, cell and organoid
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dissections, cell isolations, flow cytometry, imaging, cell culture. Any new techniques will be taught. • Develop new experimental protocols as the need arises. • In coordination with PI, assist with new
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/10.1371/journal.pone.0206172 John Ngai. BRAIN 2.0: Transforming neuroscience. Cell 185, 4-8 (2022). https://doi.org/10.1016/j.cell.2021.11.037 Sven Dorkenwald et al. Neuronal wiring diagram of an adult
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serial sectioning operation. PLoS One 13:e0206172 (2018). https://doi.org/10.1371/journal.pone.0206172 John Ngai. BRAIN 2.0: Transforming neuroscience. Cell 185, 4-8 (2022). https://doi.org/10.1016/j.cell