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shape the brain’s trajectory in health and disease. More information about the lab and their work can be found by visiting https://www.jin.scripps.edu/ About the Research Technician II role: As the
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University and offers a highly collaborative environment with access to state-of-the-art genomics, imaging, computational, and experimental resources. Learn more about the lab at https://www.limmunity.com
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approaches. Their model system is the rodent’s sensory cortex. Their work is revealing the logic and the mechanisms by which elementary circuits, the building blocks of cortical architecture, orchestrate
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flies with brain-wide ‘connectomics’ and computational modeling. The goal is a mechanistic understanding of how flies use sensory cues, internal states, and memory to guide navigation. Learn more about
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. Our research integrates genetic, molecular, cellular biology and structural biophysics to inform both basic biology and future therapeutic applications. For more information, visit https
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the interactions between enteric bacterial pathogens and their hosts. Waldor and his team, based at Brigham and Women's Hospital develop animal models and integrate pathogen- and host-directed profiling methods
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machine learning. The project aims to develop AI methods for mesoscale structural biology, understanding how cellular macromolecules organize into higher-order structures. You will work in a team at Janelia
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meticulous Research Technician to join their group. Richard Palmiter is interested in the neural circuits that control innate behaviors. Palmiter and his team use mouse genetic models and viral gene transfer
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biology. Please include a cover letter with your application detailing your qualifications and experience for this position. Describe a deep learning project you have executed. Projects in computer vision
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genetics, genome engineering, advanced microscopy, quantitative image analysis, single-cell and spatial multi-omics, biomaterials, and engineered in vitro model systems to investigate how the aging