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samples, laboratory cell lines and animal models. Ongoing and future projects include (i) genomic and functional characterization of molecular drivers of women’s cancers, (ii) biology and therapy
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biology, super-resolution microscopy, live-cell imaging, multi-omics, and mouse disease models to understand insulin-secretion deficiency and synapse degeneration. (See https://www.mcw.edu/departments/cell
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will beworking in Pediatrics. Position Purpose Under the supervision the lab PI and in consultation with clinical collaborators, perform engineering-based research applicable to cardiovascular disease as
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statistical analysis and computer programming in any of the following areas are highly valued: structural equation modeling, mixed effects modeling, mediation analysis, spatial modeling, web-based mapping
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resilient adaptation from PGD. Current projects include developing predictive models of chronic grief outcomes in acutely grieving adults, characterizing the heterogeneity in grief trajectories, and
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regeneration by integrating state-of-the-art omics approaches with genetic mouse models and human cell culture systems. Specifically, the postdoc will work on investigating molecular mechanisms of direct cardiac
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biology, super-resolution microscopy, live-cell imaging, multi-omics, and mouse disease models to understand insulin-secretion deficiency and synapse degeneration. (See https://www.mcw.edu/departments/cell
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, and perspectives through merit-based processes and in alignment with all applicable laws. We believe that embracing human differences is critical to realize our vision of a healthier world, and we
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an inclusive environment that values diversity in backgrounds, experiences, and perspectives through merit-based processes and in alignment with all applicable laws. We believe that embracing human differences
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Vascular Biology Council of the American Heart Association and co-director of an NHLBI T32 Training program in Signature Transdisciplinary Cardiovascular Sciences based at MCW’s Cardiovascular Center, I