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early metabolomic disruptions, followed by the genetic and biochemical dissection of the mechanisms underlying these alterations. The project takes advantage of recent transcriptomic and imaging data
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career opportunity You will lead experimental embryology and skin biology projects that manipulate avian and vertebrate developmental programs. You will apply advanced imaging, genome editing and
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of the lab is to characterize the role of nuclear pore complex machinery in mediating HIV-1 nuclear entry and subsequent downstream process that leads to productive viral gene integration. The goal
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skin biology projects that manipulate avian and vertebrate developmental programs. You will apply advanced imaging, genome editing and functional genomics to reveal how genes sculpt morphology. You will
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, with opportunities to lead analyses, develop new expertise and contribute to high-impact scientific publications, and must have: A PhD, or equivalent research experience, in computer sciences
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molecules. Human physiology is governed by thousands of dynamic components interacting across vast biological scales. While advances in imaging and molecular profiling have transformed individual disciplines
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-based quantum imaging will be a strong secondary advantage, particularly for translating fabricated diamond devices towards sensing and imaging novel materials. The successful candidate will play a key
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will provide access to state-of-the-art research laboratories and facilities (including flow cytometry, imaging and microscopy, Birmingham Tissue Analytics and Genomics Birmingham) as
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atomization, droplet formation, and transport processes; applying quantitative image analysis and scientific programming techniques; comparing experimental observations with computational models; and
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characterize the role of nuclear pore complex machinery in mediating HIV-1 nuclear entry and subsequent downstream process that leads to productive viral gene integration. The goal of this position is to work