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tissue-specific mutant mouse models to investigate the underlying mechanisms controlling muscle growth and metabolic flux. The projects are multidisciplinary with excellent opportunities for advanced
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elegans (C. elegans) as a model system with approaches including: Quantitative genetics (GWAS/QTL mapping) High-throughput phenotyping RNA-seq and multi-omics integration Functional genomics (e.g., RNAi
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. Current research areas include: hadronic amplitude analysis and scattering theory, heavy-ion collisions and the properties of hot QCD matter, hadronic probes of beyond-the-Standard-Model physics, and formal
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by traditional hearing healthcare, including those living with dementia and those in long-term care. The postdoc will be mentored by Dr. Dana Urbanski (gerontology, audiology, and public health), with
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strong background in experimental design and familiarity with computational models of language production. Experience with cognitive neuroscience methods is a plus. Job Duties 100% – Research
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Society. The laboratory uses state-of-the-art technologies and tissue-specific mutant mouse models to investigate the underlying triggers of cancer-induced neuromuscular dysfunction and musculoskeletal
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changes in microgravity conditions. d. Ability to perform cell culture and tissue models such as 3D tissue models and microfluidic systems to simulate microgravity. e. Understanding and experience with