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“drylab” techniques. Current drylab approaches focus on bioinformatics, including emerging artificial intelligence models. Current wetlab approaches focus on RNA and chromatin biology. Candidates should
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cellular biology approaches. The Park Lab develops human stem cell-based neural models to investigate molecular and cellular mechanisms regulating neurodevelopment and neural function, and to understand how
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biosafety level 2 (BSL2+) lab), immunology (such as flow cytometry and CAR-T engineering), molecular biology (such as CRISPR, RNA biology), or animal models, (e) collaboration with other researchers both
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application of unique mouse models for in vivo pathway discovery and validation. Experience or interest in flow cytometric analyses, and basic immunological techniques will be essential and interest in
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, including the PBWT/GBWT family of haplotype algorithms for biobank-scale identity-by-descent (IBD) detection, the Med-BERT and CovRNN clinical foundation models for electronic health records, and the UDIP
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, design and analysis of virus-derived RNA libraries, and development of machine learning models for detecting functional elements in viral metagenomic datasets. This project is a collaboration with the
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of research, scientific communication, and the translation of computational models into clinically meaningful tools. Individual development goals will be established at the beginning of the appointment and
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, and therapeutic engineering. Projects may involve immunotherapy models, CRISPR-based perturbation and screening, mRNA therapeutics and vaccines, protein engineering, systems immunology, and tumor
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follow Yale University’s Postdoctoral Compensation guidelines and will be commensurate with experience. The current Year 1 minimum is $68,500. Information about benefits for postdoctoral appointments is
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execute wet-lab experiments, including some combination of qPCR / RT-qPCR, Western blotting, Flow cytometry, single-cell and bulk transcriptomics, and mouse work (including immune and infection models