56 web-programmer-developer-"https:" "https:" "PhD Jobs" Postdoctoral positions at Stony Brook University
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Staphylococcus aureus biology and pathogenesis using in vitro and in vivo models. ● Document data generated in studies, analyze data with appropriate statistical methods, prepare manuscripts for publication in
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) to collect structural and dynamic MRI data. ● Quantitative analysis: develop pipelines for dynamic MRI and physiological data; integrate multimodal metrics to uncover fluid-flow interactions
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signaling during Drosophila development as well as cancer. We use Drosophila developmental genetics, cell biology and biochemistry to address these questions. Substantial training will be provided
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, this position will involve training and management of undergraduate or graduate students, development of new proposals, and day-to-day management of laboratories and scientific collaborations. The researcher will
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techniques, including cell culture, molecular and biochemical assays, metabolic analysis, imaging, and mouse handling and experimental work. This position offers an excellent opportunity to develop strong
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Staphylococcus aureus biology and pathogenesis using in vitro and in vivo models. ● Document data generated in studies, analyze data with appropriate statistical methods, prepare manuscripts for publication in
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Hippo signaling during Drosophila development as well as cancer. We use Drosophila developmental genetics, cell biology and biochemistry to address these questions. Substantial training will be provided
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. Key responsibilities: * Data acquisition: operate a 3 T Siemens Prisma Fit (and additional 3 T systems if desired) to collect structural and dynamic MRI data. * Quantitative analysis: develop pipelines
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techniques, including cell culture, molecular and biochemical assays, metabolic analysis, imaging, and mouse handling and experimental work. This position offers an excellent opportunity to develop strong
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) to collect structural and dynamic MRI data. ● Quantitative analysis: develop pipelines for dynamic MRI and physiological data; integrate multimodal metrics to uncover fluid-flow interactions