15 experiment-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:" Postdoctoral positions at The University of Arizona
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Pharmacology, Neuroscience, Structural Biology, or a related field, along with a strong interest in neuroscience research. For Structural biology, experience in protein purification and Cryo-EM is expected
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, conferred by the position start date. Demonstrated research experience in cancer biology, developmental biology, tissue engineering, mechanobiology, or a closely related area. Experience with mammalian cell
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here . Duties & Responsibilities Perform independent research experiments under the direction of the Principal Investigator. Investigate molecular mechanisms using mouse and rat models or pediatric lung
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conducting experiments using immunohistochemistry, confocal imaging, whole-cell patch-clamp electrophysiology, and mouse tissue processing to investigate how neural circuits, synaptic physiology, and
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join our team studying the neural circuit mechanisms of behavior, such as chronic pain and the biological basis of neuromodulatory therapies for chronic pain. The position involves conducting experiments
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to conduct original research. Preferred Qualifications Skills in computational analysis are highly desired. Experience in biochemistry, molecular biology, physiology, and biophysics methods. Experience using
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are especially encouraged to apply. Extensive experience with protein expression and purification is required. Experience with cryo-EM and model building is desirable but not required. Position and Environment
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in the Department of Dermatology at the University of Arizona College of Medicine-Phoenix. The candidate should have experience performing research in a laboratory setting and should have authored peer
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. Preferred Qualifications Experience and expertise in integrating multi-scale remote sensing data (spectral or structural) with other environmental variables (e.g., climate, soil, and ground observations
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role on the award and enjoy a range of experiences associated with the study of the mechanisms underlying functional and structural diversity among brainstem motor neurons innervating different upper