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neuroscience research including performing behavioral experiments and electrophysiological recordings in animal models, Ability to work with a high degree of independence, to find creative solutions
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, western blot analyses, and qRT-PCR. • Expertise with immunofluorescence high-resolution imaging and live-cell imaging. • Experience with preclinical models of auditory and vestibular diseases. • Experience
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representation learning, and real-world data modeling to stratify risk and optimize MHT formulations. The candidate must thrive in a multidisciplinary, fast-paced research environment and work independently and
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lung injury to both neonatal and adult lung using rodent models and in vitro cell culture techniques. Allergen based asthma models are also being studied. Pathobiological aspect involves investigating
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patient-specific human induced pluripotent stem cells (iPSCs), primary human cells/tissues, along with animal models, to develop a platform for the evaluation of cardiovascular toxicity associated with
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use a combination of patient-specific human induced pluripotent stem cells (iPSCs), primary human cells/tissues, along with animal models, to develop a platform for the evaluation of cardiovascular
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progression and metastasis, and the combination of radiation treatment with immune checkpoint inhibitors in anti-cancer therapy. The positions will involve the use of animal models, human cell lines, and
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models, human tissue and blood samples. Use biochemical, cellular, molecular, and pharmacological approaches to for mechanistic studies. Use cutting-edge technologies for transcriptomic, proteomic, and