8 spatial-modelling positions at HHMI

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  • HHMI | Princeton, Indiana | United States | 1 day ago

    Specialist to join Dr. Ai Ing Lim at Princeton University. The Lim Laboratory at Princeton University studies the immune system during reproduction and development. Our research combines experimental models

  • HHMI | Tuskegee Institute, Alabama | United States | 1 day ago

    . To tackle these questions, they combine in vivo CRISPR screening with single-cell multi-omics, spatial genomics, and chemical biology tools. Their work is deeply collaborative, both within the lab and across

  • HHMI | San Francisco, California | United States | 5 days ago

    of neurons control the spatial and temporal structure of cortical activity. Towards this goal, they use in vivo and in vitro electrophysiological, imaging, and anatomical techniques as well as behavioral

  • HHMI | San Francisco, California | United States | 1 day ago

    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

  • HHMI | Berkeley, California | United States | 2 months ago

    they continue to investigate. Approaches include genetics, spatial genomics, single-molecule biophysics, super-resolution imaging, computational modeling, and structural studies including X-ray

  • HHMI | University Place, Washington | United States | 1 day ago

    , especially viruses and bacteria evolving within their hosts and solid tumors progressing to malignancy. In particular, they are characterizing how spatial organization shapes these evolutionary outcomes and

  • HHMI | Campus, Illinois | United States | 2 months ago

    Primary Work Address: 19700 Helix Drive, Ashburn, VA, 20147 Current HHMI Employees, click here to apply via your Workday account. TLDR: Build the data backbone for the next era of AI-powered spatial

  • HHMI | Davis, California | United States | 1 day ago

    , reproduction, and development. They use cutting-edge single-cell, spatial, in vitro, and surgical approaches in multiple model species and in human organoids to investigate the uterine endometrium and maternal

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