81 molecular-modeling-or-molecular-dynamic-simulation research jobs at University of Minnesota
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responses and protective efficacy of vaccines in laboratory animal models (e.g., guinea pigs and mice) Mammalian cell and virus cultivations Bacterial and viral gene cloning and manipulation Lab animal
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evaluate experimental guinea pig and mouse models of viral infection and placental/fetal development Collection and analysis of experimental animal’s organs and tissues Bacterial and viral cultivations
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is seeking a postdoctoral associate for a funded project on evolutionary responses to climate change and consequences for geographic range dynamics. Our project specifically focuses on improving
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Disease Lab, USDA-ARS, St. Paul, MN, focusing on molecular identification and functional characterization of genes for resistance to cereal diseases (Leaf rust and Fusarium head blight) in wheat
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scientist to join an enthusiastic and collaborative team of outstanding scientists. The successful applicant will hold a terminal degree from an accredited institution, in the area of cellular and molecular
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, Molecular Biology, or a closely related biomedical field • Experience with retinal immunopathology, photoreceptor biology, or RPE-related degenerative disease models • Demonstrated expertise in retinal
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, Ph.D. This position is designed to recruit two highly motivated postdocs with a strong background in molecular biology or virology to support studies on Epstein-Barr virus (EBV) oncology. Individuals
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of inflammation and the formation of memory T cells. The work involves integration of mouse models, flow cytometry-based immune profiling, and molecular dissection of cell death and efferocytosis pathways, aiming
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years • At least 3 months experience as an undergraduate researcher (or equivalent) in a research lab • Experience with standard molecular biology techniques and culturing bacteria • Proficiency in
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neuroinflammation and CNS pathology in mouse models of neurodegeneration, demyelination, and brain tumors. Make use of multidisciplinary approaches combining advanced flow cytometry, molecular biology, behavioral