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-driven mathematical modeling in a transdiagnostic clinical cohort. https://impact-mh.org/awardees/impact-mh/ IMPACT-Y is collecting repeated measures from approximately 2,400 individuals across multiple
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stress affects specific cell types in the nervous system and the gut, using human pluripotent stem cell (hPSC)-derived models of the enteric nervous system. Our work sits at the intersection of stem cell
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and kinetic modeling. A PhD in biomedical engineering, physics, or a related field is required. However, interested candidates with a strong computational background and interest in getting involved in
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-based perturbations, base/prime editing, and targeted epigenetic modulation). Functional genomics in neuronal systems, including transcriptomic and epigenomic profiling. Model systems such as human iPSC
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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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. Current PhD students who will graduate by summer 2026 are encouraged to apply. Applicants with prior experience in mammalian cell culture, mouse models, or bioinformatics are preferred. People seeking dry
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-tracing mouse models, lung injury and tumor-initiation systems, single-nucleus multiome (RNA and ATAC) and spatial profiling, and validation in human early-stage lung adenocarcinoma specimens. The position
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and mouse models of cerebrovascular disease Contribute to study design, interpretation of results, and preparation of manuscripts and presentations Required Qualifications PhD in molecular biology, cell
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drugs. Our focus is on cytokine-based drugs and immune checkpoint inhibitors. We use immune competent murine models and human cell culture systems for early drug development. We also study mechanisms
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established internationally recognized experimental platforms for the study of intraerythrocytic parasites, parasite metabolism, chemical biology, and preclinical models for therapeutic discovery and