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(AD), mouse models, cell culture or imaging is highly desirable. The postdoctoral fellow will join a multidisciplinary and dynamic research team focused on understanding the role of microglia in
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pathophysiology of the inner ear using multiple genetic mouse models and a novel human stem cell-derived 3D inner ear organoid model. We study genetically-mediated hair cell and neuronal degeneration in these model
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the genetic and developmental basis of pediatric heart disease. We analyze genetic variation in samples from patients with congenital heart defects and utilize mouse, Xenopus and cell-based models to assess
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research environment and opportunities for career advancement, and has a strong publication record in mouse genetics, electrophysiology and molecular biology. We routinely employ mouse models of sickle cell
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2026. Successful candidates will have particular interest in both fundamental materials/inorganic/physical chemistry as well as applications including energy, spintronics, and quantum computing
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interdisciplinary scholarship and be excited about substantial conversation and collaboration with other disciplines. This postdoctoral fellowship program aims to create a cohort of researchers optimally positioned
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). The project focuses on experimental design, optimization, and construction of entangled and/or squeezed states of light for a range of applications. The role also involves building and setting up various
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: Define the critical engineering requirements (optical pulse duration, terahertz crystal materials in cryogenetic environments, signal-to-noise ratio optimization, entanglement witnesses and verification
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for gene regulatory networks, single-cell multi-omics integration, spatial omics, and variant effect mapping in complex disease. Strong method/tool dev experience required (Python/R, ML/stats
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— from ecosystems to microbiology and developmental biology, from evolution to cell biology, from molecular biology to systems biology, bioinformatics, and genomics. It is always an exciting time for