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Field
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generation of hand-held multispectral optoacoustic tomography (MSOT) systems for clinical imaging. This project aims to establish advanced hybrid optoacoustic and ultrasound imaging technologies with
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for advancing quantum communication, integrated photonic quantum computing, quantum sensing, precision tests of quantum mechanics, and the development of novel quantum-optical interfaces. Under her
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
measurements of mucus transport, which may include particle transport assays and optical coherence tomography. Related work may include single-cell RNA/ATAC sequencing, RNA in situ hybridization, and CRISPR/Cas9
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not ready for non-expert users. The goal of the project is to develop both the previously demonstrated X-ray microscope mode and the holo-tomography mode. This includes developments of software
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tomography (OCT), visual field, full-field electroretinograms (ffERG), and genetic data for automated screening, diagnosis, prognosis, and monitoring of major eye diseases such as glaucoma and other optic
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 17 days ago
for generating entangled photons involves bulky, alignment-sensitive bulk-optic assemblies. These systems are ill-suited for the rigorous vibration, thermal cycling, and radiation environments of space
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-destructive evaluation techniques, including optical and laser-based metrology, industrial X-ray computed tomography (CT), and ultrasonic sensing, will be used to monitor process stability and detect defects
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. Assessing fluid distribution in microgravity analogs. h. Techniques such as optical coherence tomography, fundus photography, cardiovascular monitoring, muscle and bone assessment to evaluate ocular health
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(STED) and Stochastic Optical Reconstruction Microscopy (STORM) Cryo-electron tomography Imaging data science and AI-based analysis A strong record of contributions to peer-reviewed research publications
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(NUCLEI); and two Topical Collaborations: 1) 3D quark-gluon structure of hadrons: mass, spin, and tomography, and 2) Nuclear Theory for New Physics. Further information on our group and its research