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mechanoelectrical feedback, it requires specific tools to uncouple them and to decode the transformation of complex acoustic stimuli by the brain. In the lab, we are developing electrophysiological and imaging
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patients with the genetic disease hereditary hemorrhagic telangiectasia. Approaches make use of spatial omics, advanced imaging techniques such as 3D deep tissue staining, microCT, and synchrotron imaging
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collaboration with the theorists involved. The postdoc will construct and use 3D printed model porous media. The analysis will entail extensive use of image analysis techniques such as Particle Image
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 months ago
research outputs and an important reason why Carolina is one of the leading public research institutions in the country. UNC-Chapel Hill offers postdocs comprehensive medical and vision coverage , paid leave
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 days ago
research outputs and an important reason why Carolina is one of the leading public research institutions in the country. UNC-Chapel Hill offers postdocs comprehensive medical and vision coverage , paid leave
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using a variety of cognitive and cognitive neuroscience approaches (e.g. behavioral, psychophysical, neuropsychological, physiological, imaging, pharmacological, genetic, and computational methods
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projects in vision research. Position Description: Our laboratory is interested in studying the role of mechanosensation in the eye and its role in glaucoma and other ocular pathologies. Questions we
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new paradigm of deployable nanoelectronic devices with unprecedented efficiency and scalability that can be used ubiquitously towards ultra-low energy QC, AI, and neuromorphic computing systems
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traditional areas of psychology. These primary research themes include Affective Science; Diversity Science; Neuroscience; Personality and Individual Differences. To learn more please visit our site at https
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for joint-targeting peptides. Screen FDA-approved drugs for their ability to stimulate lubricin expression in human cartilage and mouse models of post-traumatic osteoarthritis. Use advanced imaging techniques