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be used to prepare lamella samples for high resolution cryo-EM imaging and tomography. From AI assisted image analysis, 3D models for key proteins and biomolecular complexes will be fitted into 3D
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ultrasonic RF data from wearable ultrasound devices using advanced beamforming techniques. Develop image reconstruction algorithm and investigate using time series ultrasound image analysis for continuous
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computed tomography (CT) reconstruction, including sparse-view and limited-angle algorithms, and the application of advanced machine learning (ML) and computational imaging methods to scientific and
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 1 day ago
microscopy, and 3D image reconstruction Ability to design complex multi-factorial experiments integrating genetic, pharmacological, and physiological manipulations Project management skills to coordinate
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Post-Doctoral Position - Pulse Sequence and Reconstruction Techniques for Prospective Motion Correction y - (250000N6) The Center for Advanced Imaging Research (CAIR) within the Department
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reconstructions, paleogeography, and geodynamics is also favourable Strong analytical skills, excellent written and verbal communication, and the ability to work collaboratively in a diverse team Prior publication
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Position Overview School / Campus / College: School of Medicine Organization: Radiology Title: Postdoctoral Scholar, Department of Radiology, Diagnostic Imaging Sciences Center (DISC) Position
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the active target and the calorimeter, employing cutting edge detector technologies (LGADs & LYSO) and fast electronics. Our team also carries a host of simulations to prototype the experiment and develop
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reconstruction, semantic scene understanding, and generative models for photo-realistic image / video synthesis. Overall, the main focus is on high-impact research with the aim to revolutionize the research field
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., diffusion transformers, multimodal representation learning) for modeling high-dimensional biological images. Develop computational methods to reconstruct and simulate 3D tissue architecture and dynamics