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–based approaches. We work primarily with the model system C. elegans and apply both computational and experimental methods to uncover fundamental principles of brain function. For more information about
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protein localization, dynamics, and function Learn innovative microscopy methods to analyze cell dynamics in fly or mouse embryos using confocal microscopy and time-lapse imaging Assist with the design and
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support and training in advanced light microscopy, mentoring and experimental support for graduate and undergraduate students, developing new methods, and conducting independent research. This critical
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, hands-on work. We share our methods, results, and tools with the scientific community. Summary: The HHMI CryoEM Shared Resource at Janelia Research Campus is a world-class core facility with a large and
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process within scientific discipline. Investigates, creates, and develops new methods/technologies for project advancement. Maintains high level of professional expertise through familiarity with scientific
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at Harvard Medical School. The lab uses methods in molecular virology and structural biology to study how viruses interact with cellular receptors and how neutralizing antibodies can block these interactions
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combine genetics, optogenetics, in vivo calcium imaging, and quantitative behavioral methods to uncover fundamental organizational and functional principles of the brain. For more information about the
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levels (GLP-1 receptors), and immune responses (histamine receptors), among others. The lab seeks to understand the molecular mechanisms underlying GPCR function by applying methods in biochemistry
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cross-modal object recognition. This position is ideal for experimentalists who are passionate about mechanistic insights into cognitive behavior and eager to develop innovative methods. Application
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of accelerating discovery across the life sciences. We are seeking a highly skilled AI Research Engineer to join our team and advance our AI-driven scientific initiatives. You will build methods for supervised