17 molecular-modeling-or-molecular-dynamic-simulation Fellowship positions at University of Maryland, Baltimore
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are interested in identifying the novel signaling pathways that regulate myocardial development or govern cardiomyocyte differentiation and maturation by using in vitro and in vivo approaches. Cell and mouse model
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understanding of computational algorithms and statistical modeling and a working knowledge in molecular biology, microbiology, and microbial ecology • possess a working knowledge on genomic sciences and
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outcomes related statistics Experience in molecular- and microbiology (such as bacterial cultivation, DNA/RNA extraction, qPCR) Interest in women’s genital health and the vaginal microbiome PI highly values
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in one or more of the following areas: algorithms, analytical derivation, data analysis, coding, or mathematical modeling. Strong programming skills are highly desired. The candidate should demonstrate
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™. There will be a focused curriculum including didactics, participation in patient care including simulation, treatment planning, and one-on-one review of cases. Although the focus of the fellowship is clinical
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of the retinal cells. The candidate will be expected to: conduct human imaging in healthy and diseased eyes, perform data processing, analysis and presentation, upgrade AO imagers, fabricate AO model eyes, and
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techniques such as cell culture-based assays, flow cytometry, IHC, fluorescence microscopy, Western blot, PCR, ELISA, in vivo murine models and CRISPR-Cas9. Likewise, knowledge of basic transplantation is