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(Liver-Muscle-Bone) as a mediator of cachexia and mechanisms underlying muscle weakness during cancer survivorship. These studies are funded by multiple sources, including NIH/NCI and the American Cancer
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funded by the National Institutes of Health. The current lab research is focused on the pathogenesis and molecular mechanism of diabetes and obesity, fatty liver disease, and cancer using both cell systems
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. The Mimche Lab is seeking a highly motivated and energetic post-doctoral research associate to support research efforts aimed at deciphering the molecular mechanism of axonal guidance cues in the pathogenesis
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-brain barrier research. Ideal candidates will have: 1.A PhD in the life sciences 2.A solid background in cell culture and tissue engineering approaches 3.Knowledge in Neuroscience and Stem Cell Research 4
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or familiarity with quantum optics, open quantum systems, (rare-earth) emitter physics. • Experience or familiarity with strongly correlated electron physics, magnetism, or topological phases. • Experience
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communication skills, demonstrated experience working with collaborative teams, and proficient quantitative and coding skills. Experience working with Earth system models, attribution science approaches
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), spectroscopy (e.g., stellar properties; radial velocities), and astrometry (primarily Gaia DR4), using data from ground- and space-based facilities. We especially value candidates with strong technical skills
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research on pediatric brain tumors, primarily pineoblastoma. Our research is focused on examining the molecular mechanisms of tumor progression and the identification of novel drug targets using genomic and
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neural and behavioral mechanisms underlying response to such treatments, are encouraged to apply. The fellow will actively participate in implementation, data analysis, and dissemination of findings
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to global scales. Forests dominate the land carbon sink, and forest-based carbon removal strategies have the potential to confer many benefits for the environment and the bio-economy. However, at scales