15 institute-of-applied-mechanics Postdoctoral positions at University of Texas at Dallas
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targets that affect sensory neuron excitability following injury, and uncover the mechanisms that drive pain chronification. As part of our team, you will work directly with human dorsal root ganglion
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targets that affect sensory neuron excitability following injury, and uncover the mechanisms that drive pain chronification. As part of our team, you will work directly with human dorsal root ganglion
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that are aimed at understanding the mechanisms and treatments of chronic pain in preclinical models. The applicant should have experience working with rodents and performing behavior assays, surgeries, and
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encouraged to apply. You will work under the supervision of Dr. Benedict Kolber, the Principal Investigator, and receive assignments and evaluations directly from him. The Kolber Lab is an integral part of
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/21/2025 Job Summary Multiple postdoctoral positions (up to 4) in the areas of peptide chemistry/engineering, protein engineering/design, and biocatalysis are available in the laboratory of Rudi Fasan
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/21/2025 Job Summary Multiple postdoctoral positions (up to 4) in the areas of peptide chemistry/engineering, protein engineering/design, and biocatalysis are available in the laboratory of Rudi Fasan
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Posting Details Posting Details Posting Number S06524P Position Title Postdoctoral Research Associate Functional Title Postdoctoral Research Associate Department Nanotech Institute Salary Range
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novel proteins/antibodies and explore their biomedical applications. Our goal is to utilize these engineered proteins to precisely regulate intracellular signaling pathways, eventually translating
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several projects with typically developing and clinical risk populations (e.g., psychosis, depression) focusing on hormones, neurodevelopment, biomarkers, and scale development. We use a wide variety of
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novel proteins/antibodies and explore their biomedical applications. Our goal is to utilize these engineered proteins to precisely regulate intracellular signaling pathways, eventually translating