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imaging, and the Reiser labs’ expertise in instrumentation, fly behavior, neural circuit analysis, and connectomics. This position is part of AI@HHMI, a ten-year initiative to integrate artificial
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the guidance of a senior lab member, this role will be involved in experiments related to mosquito behavior, sensory perception (chemosensation, mechanosensation), imaging techniques, and gene expression
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information and control behavior in mice and songbirds. We place particular emphasis on advanced optical approaches, including multiphoton microscopy, Bessel-beam imaging, and closed-loop patterned stimulation
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) and the Schnitzer Lab (Stanford University; HHMI), seeks a Staff Robotics Engineer to design and build AI-driven robotic systems for high-throughput brain imaging and behavioral phenotyping in
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, proteomics and genomics, fungal genetics, evolutionary analysis, mammalian cell culture, and state-of-the-art live-cell imaging. Through collaborations they have access to cryo-electron microscopy and cryo
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, computational analysis of genomics and imaging data would be a plus. Superior verbal and written communication skills along with organizational skills, prioritization skills, time management skills, and
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from tissues for downstream analysis. Perform flow cytometry, histological analyses, and imaging-based ferroptosis assays. Analyze single-cell and spatial transcriptomic data in collaboration with
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chemosensory receptors using a variety of approaches, including: Molecular biology (mutagenesis, plasmid design, cloning) Membrane protein biochemistry (expression, purification, and analysis) Functional assays
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body in Drosophila and bumblebees as model systems. Our research integrates genetic tools, high-throughput behavioral analysis, EM connectomics, expansion microscopy, mass spectrometry, calcium imaging
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have created a rich, flexible behavioral paradigm where mice search for hidden food items in a large, dark arena, guided by hard-to-locate sounds. We are using this assay to ask: how do animals use