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clinical diagnostic setting. This includes algorithms development as well as pipeline design. The Analyst, Bioinformatics II will also develop methods to perform benchmarking of tools and quality assessment
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substance-use disorders. The candidate for this position will assist with the benchmarking of newly engineered fluorescent sensors using in vivo fiber photometry in rodents. Past laboratory experience and
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. Expertise is required or highly desired in one or more of the following areas: algorithms, analytical derivation, data analysis, coding, or mathematical modeling. Strong programming skills are highly desired
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from complex datasets. Prior experience with 3D confocal microscopy, Imaris, MATLAB, and Prism, as well as experience developing algorithms for phenotyping neurons and microglia based
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cellular biology. His research integrates systems biology, mathematical modeling, bioinformatics, algorithm development, and the creation of open‑source software designed for broad usability. Benefits
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between various imaging modalities and multi-omics during aging and development. • Implementing computationally intensive algorithms on high-performance computational clusters
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between various imaging modalities and multi-omics during aging and development. • Implementing computationally intensive algorithms on high-performance computational clusters
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data are especially well-suited for the position . The postdoctoral researchers will develop algorithms for deployment at our prestigious R Adams Cowley Shock Trauma Center and beyond, and there is
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imbalanced cross-sectional imaging data are especially well-suited for the position . The postdoctoral researchers will develop algorithms for deployment at our prestigious R Adams Cowley Shock Trauma Center
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for postdoctoral researcher position to conduct collaborative research aimed at the development of novel data mining algorithm to neuroimaging, genetic, and clinical data for brain disorders such as