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to implement advanced computational pipelines, including machine learning, deep learning, Bayesian inference, and probabilistic mixed membership modeling for innovative research. · Contribute
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trainees. Our research focuses on aging, anti-tumor immunity, and vesicle trafficking using established models, with strong translational relevance. We welcome candidates with a background in cell biology or
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planned to last 2 years, with the option to extend. In the Burger lab, we are interested in early vertebrate development of the axial and lateral plate mesoderm using zebrafish and mice as models, as
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of Colorado. Fellows will conduct mechanistic and translational research in preclinical models of Chimeric Antigen Receptor (CAR) T cells. Key responsibility is to lead a research project studying CAR T cell
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arthritis in an animal model. Additionally, the work will induce how bacteria-produced metabolites trigger pathogenic autoantibodies. S/He will be a valued contributor to a multi-disciplinary team with
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research that places the School in the top 20 in NIH funding among Schools of Public Health, and community service that addresses public health issues including chronic disease, healthcare access, climate
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experiments to better understand how neutrophil derived mediators influence inflammation within the mucosa, including, but not limited to, models of inflammatory bowel disease. Utilizing specialized knowledge
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Qualifications: Previous experience in vision science research Experience with cell, developmental, and molecular biology techniques Training in the use of animal models of visual impairment Training in ocular
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with induced pluripotent cell differentiation and organoid development Experience in vivo modeling of tumors Experience with chromatin assays such as ChIP-Seq Knowledge, Skills and Abilities: Proficiency
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response of the lung vasculature to hypoxia and other injuries. Specifically, the post-doctoral fellow will perform mechanistic studies in hypoxia-induced pulmonary hypertension animal models as well as in