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: Ph.D. in Microbiology, Cell biology, Biochemistry or other related discipline. Extensive expertise in mammalian cell culture and bacterial genetics. Excellent communication, writing and teamwork skills
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Lab at the School of Aquatic and Fishery Sciences (SAFS) invites applications for a full time Postdoctoral Scholar (PDRA) to develop genomic tools and protocols for large scale genetic mark recapture
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, functional genomics, and mouse engineering approaches to understand how cancer cells communicate with their neighbors, or the stromal cells, in the metastatic cascade. Our lab also applies biostatistics
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to candidates who have recently earned or will soon earn their degree). Previous experience in cell and vascular biology (confocal microscopy) or mouse disease models. Excellent written and verbal communication
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Position Overview School / Campus / College: College of the Environment Organization: Environmental and Forest Sciences Title: Postdoctoral Scholar: Forest Disturbance and Landscape Ecology Position
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equivalent) at the time of hire in Microbiology, Cell Biology, Biochemistry, Bioengineering/Biomedical Engineering, Biophysics, or related fields, and 1 or more years of experience in flow cytometry
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Preferred Qualifications: PhD in immunology, molecular biology, microbiology, or a similar field. Have published one or more papers in peer-reviewed journals. Can guide research projects. Have a background in
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research participants. With this research, we have a unique opportunity to address the large unmet need of treatment-resistant disorders of brain function. We have applied the technology to patients with
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Position Summary The lab of Dr. Jae-Sung Kim, PhD, in the Department of Surgery at WashU in St. Louis is seeking a Postdoctoral Fellow to join our research team focused on ischemia/reperfusion (I/R) injury in livers. Specifically, the Kim lab investigates the mechanisms behind steatosis-mediated...
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biochemistry, genomics, molecular genetics, cell biology, and model organism systems to uncover the mechanisms by which histone mutations disrupt human development and lead to disease. Our ultimate goal is to