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to tackle the challenges at the forefront of fluorescence microscopy. As a part of the Tools@HHMI initiative at Janelia, we strive to challenge the boundaries of fluorophore/probe development for dynamic
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computers Ability to mentally visualize complex three-dimensional structures Ability to perform detailed, repetitive work while sustaining close attention Ability to understand and apply written guidelines
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by molecular dynamics simulations of relevant biological structures. Success in this role requires close collaboration with cryoET experts, structural biologists, and computer scientists to ensure
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using cutting-edge structural biology (cryo-EM), electrophysiology and neurophysiology. Our ultimate goal is to uncover how insect vectors of disease—like mosquitoes—detect their human hosts, and use
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microscopy and cryo-electron tomography to pursue structural studies of the transport machinery. For more information about Dr. Samara Reck-Peterson and the lab, please visit: https://reckpetersonlab.org
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in the field of metabolomics, lipidomics, proteomics, and many more. We are equipped with pioneering instruments and solutions to facilitate the study of the dynamics, structures, functions, and
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professionals. Together, we’re unlocking the fundamentals of biology and building an open, inclusive future for science. The Palmiter laboratory at the University of Washington is seeking a dynamic, driven, and
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imaging, closed-loop stimulation, machine learning, and custom instrument development to understand neural circuit dynamics in birds and humans. Current and upcoming projects include studies of birdsong
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regulation in health and disease. The team is highly collaborative and operates in a dynamic, team-oriented research environment focused on scientific discovery and translational impact. More information about
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, contribute to impactful science, and be part of a dynamic community committed to advancing humanity’s understanding of fundamental scientific questions. Amenities that enhance work-life balance such as on-site