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responsibility is to design and conduct experiments aligned with ongoing lab projects, focusing on muscle biology, aging, and estrogen biology. Lead individual research experiments/studies while actively
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NSF-funded project on understanding tremor propagation (TP) in the human upper limb through advanced musculoskeletal modeling, muscle fatigue modeling, and simulation of tremor-suppression devices
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, epidemiology, or artificial intelligence (https://medschool.cuanschutz.edu/ophthalmology). A history of securing competitive funding is essential. Special consideration will be given to candidates with funding
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concurrently exploring how age- and sex-related differences in key muscle qualities and force–velocity–power characteristics influence functional capacity, performance, and quality of life. Mechanistic profiling
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, muscle tone, movement quality, posture, reflexes, sensory processing, feeding readiness (as appropriate), and musculoskeletal integrity. Develop and implement individualized plans of care based on current
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remodel their internal structures to drive tissue growth, function, and regeneration. We focus particularly on the mechanisms underlying cell-cell fusion, using skeletal muscle as a primary model system
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offers a unique opportunity to work at the intersection of computational physics, neuroscience, and biomechanics, developing physics-based simulations that bridge neural circuits, muscle activity, and
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‑based food products, especially focusing on muscle‑like architectures to achieve required texture, flavour, and nutrition performance during cooking, reheating, and storage. Apply advanced texturisation
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
Research Associate position involves laboratory research in biomedical science. The position studies focus on an animal model of arthritis and include in vivo studies (muscles and behavioral analyses
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complementary aims: Aim 1. To determine how massive gene loss has reshaped heart, axial muscle and neuromesodermal development in chordates, using single-cell omics, gene-expression analyses and functional