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zebrafish and mouse models, including microinjections, live imaging, and behavioral studies. Apply molecular biology techniques including PCR, cloning, and genotyping. Perform in vivo imaging and high
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from tissues for downstream analysis. Perform flow cytometry, histological analyses, and imaging-based ferroptosis assays. Analyze single-cell and spatial transcriptomic data in collaboration with
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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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and biochemical assays. Prepare solutions, reagents, and buffers to support ongoing experiments. Collaborate closely with postdocs on experimental design and execution. Lab Operations Help maintain lab
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light microscopes, and cryo grids preparation equipment. The main function of the facility is 1) high-throughput, high-quality data collection on user-provided ready-to-image cryo grids utilizing either
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, light microscopy-based method development, method benchmarking, diverse light microscopy imaging methodologies, including confocal, expansion, and light-sheet microscopy, data analysis, and project
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other cellular processes at single-cell, high spatiotemporal resolution. By integrating protein engineering, AI-driven directed evolution, fluorescence lifetime imaging, and in situ sequencing, our team
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the development of novel genomic assays involving single cell and spatial genomic experiments and state-of-the-art imaging analysis. You will also utilize your project management skills to prioritize and manage
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Research Technician I, you are an organized, responsible, teamwork-oriented individual who can work collaboratively with graduate students, postdocs, other technicians, and Dr. Gadagkar in support of
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imaging methods and applying them to problems of biomedical interest. The lab’s current research is focused on three major areas: (1) super-resolution fluorescence microscopy, (2) single-cell transcriptome