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characteristics of obligate intracellular bacteria, including Ehrlichia and Neorickettsia spp. We use a mouse model to study the disease pathogenesis in the mammalian hosts. We also work with blood samples
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of obligate intracellular bacteria, including Ehrlichia and Neorickettsia spp. We use a mouse model to study the disease pathogenesis in the mammalian hosts. We also work with blood samples collected from
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proportional hazard models, repeated measures analyses, and hierarchical analytic methods required.). Excellent quantitative, technical, analytic, and applied research skills are required. Excellent written and
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require the use of cell lines and mouse models to mechanistically determine how tumor-intrinsic and systemic metabolism impacts cancer therapy. The individual will also be expected to be excited and
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demonstrated by track record of prior publications and related accomplishments from doctoral studies. The project will require the use of cell lines and mouse models to mechanistically determine how tumor
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target all causal microorganisms. An integrated approach that quantifies sour rot disease risk based on within-vineyard environmental and management conditions is necessary. The successful candidate will
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health and well-being, cognitive aging and dementia, loneliness and social isolation, and integrative data analysis. Strong analytic skills such as structural equation modeling, multilevel modeling
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with power system operational and/or planning models (capacity expansion, resource adequacy, operational reliability) is highly valued Supervision Exercised Provide oversight and mentorship