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/Absorption Spectroscopy preferred). Demonstrated experience with high-speed imaging, data acquisition, and complex optical alignment using lasers and advanced detectors. Experience processing dense
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technologies for imaging the living human inner ear. This project combines biomedical optics, optical coherence tomography (OCT), ultrafast lasers, image-guided surgery, and otology to address one of the most
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | about 22 hours ago
. Description: We are seeking a postdoctoral researcher specializing in silicon detector characterization and optimization for high-performance space imaging applications. The successful candidate will focus
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, or related field. Technical Qualifications Require d: 5+ years of experience in molecular and optical imaging including sample preparation, fluorescence microscope operation, high-throughput data collection
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and imaging marker development to explore the physiological and pathological processes involved in primary and metastatic brain tumors, as well as other neurological diseases. The UCLA Radiology
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Affairs. The FY27 minimum is $79, 056. Our research team is seeking a postdoctoral scholar interested in cardiovascular and cardiac surgery outcomes research and predictive analytics using advanced
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, the candidate will contribute to other neuroimaging research including novel MRI sequence and imaging marker development to explore the physiological and pathological processes involved in primary and
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therapeutic strategies to prevent and treat craniofacial birth defects, as well as stem cell-based craniofacial regenerative medicine. CCMB is located on the Health Sciences Campus of USC, which provides a
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for self-driving and/or human-in-the-loop experiments; (3) computer vision for extracting complex patterns, structure, and meaning from images and/or volumes; and (4) new mathematics and algorithms leading
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(HAI)(link is external) . Research Focus The fellow will lead computational modeling efforts to develop large-scale, multimodal models of the human brain. The work will involve integrating brain imaging