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the body during development and how defects in these processes can lead to birth defects and cancer. We use cell biological, genetic, biophysical, computational, and live-imaging approaches to visualize cell
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intelligence throughout the research process—by supporting AI-driven projects through the creation of advanced chemical reagents. About the role: As a member of the team, you will focus on chemical synthesis
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—an iron-dependent form of cell death—to understand when, where, and why it occurs. The lab studies the molecular and physiological factors that regulate a cell’s susceptibility to ferroptosis across diverse
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, and plasmid DNA cloning and purification. Work with Dr. Zhang on experimental design with the expectation that a research project will be carried out independently with results intended to lead to
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manuscripts What You’ll Do Research (80%) Lead and support research projects using bulk and single-cell sequencing, ChIP-seq, ATAC-seq, and related genome-wide profiling approaches Perform bioinformatic and
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to Janelia from the Washington D.C. metro area. What you’ll do: Lead the acquisition and analysis of neural data as mice hunt for prey using ambiguous information in a large arena. Analyze results and present
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the next 10 years to support AI-driven projects and to embed AI systems throughout every stage of the scientific process in labs across HHMI. The Foundational Microscopy Image Analysis (MIA) project
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the scientific process. The selected engineer will play a leading role in replicating, streamlining, and advancing the FlyMAX system—a state-of-the-art robotics platform for automating complex neuroscience
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years to support AI-driven projects and to embed AI systems throughout every stage of the scientific process in labs across HHMI. The AI initiative will be centered at HHMI’s Janelia Research Campus
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years to support AI-driven projects and to embed AI systems throughout every stage of the scientific process in labs across HHMI. The Foundational Microscopy Image Analysis (MIA) project sits at the heart