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coordination, colony tracking, genotyping, tissue dissection/collection, and molecular analysis, in support of studies on brain development and neurodevelopmental disease mechanisms. Assist with CRISPR-based
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-driven approaches for realistic closed-loop controlled VR-experiments, combined with two-photon calcium imaging and molecular phenotyping at single-cell resolution to investigate brain-wide circuits in
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parallel. Pick the right algorithm for the problem. Treat model selection as a design choice. Sometimes the right answer is a large language model with retrieval; sometimes it is a gradient-boosted tree
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resolution, multi-hop reasoning, lineage and provenance, relationship-heavy queries), design the data model, stand up the graph store, and operate it. Extract structure from unstructured content. Build
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incentive-based steerage models. Familiarity with self-funded employer plan structures, stop-loss, and funding strategy. Experience working with research institutions, universities, or nonprofits with complex
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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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(including genome engineering design in cells and model organisms) as well as flow cytometry workflows. As part of a broader ecosystem of shared scientific resources, this team (currently three full-time
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-fate determination, genome editing, the role of chromosome structure and chromatin modification in gene regulation, and the molecular evolution of chromosome-wide mechanisms of gene control in