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Published byDamon Francis Modified over 9 years ago
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Smart Multiscale Nano-Imaging Francisco Blanco-Silva IMI and Department of Mathematics
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Smart Multiscale Nano-Imaging Dr. Thomas Vogt USC NanoCenter
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Smart Multiscale Nano-Imaging Dr. Thomas Vogt USC NanoCenter Dr. Douglas Blom Electron Microscopy Center
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Smart Multiscale Nano-Imaging Dr. Thomas Vogt USC NanoCenter Dr. Douglas Blom Electron Microscopy Center Dr. Robert Sharpley IMI Dr. Peter Binev IMI
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Smart Multiscale Nano-Imaging <slide introducing hardware/software for supercomputing> Jupiter: SUN 4 Quad-Core AMD Opteron 2.3GHz with 128GB RAM (to be expanded to 8 Quad-Core AMD Opteron 2.3GHz with 256GB RAM) CUDA Cluster: Homogeneous 30–node cluster with newest AMD processors and nVidia graphics cards. Xgrid: Software to turn a heterogeneous group of computers into a cluster using Mac OS X Server.
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Objective: High resolution visualization High resolution visualization of the M1 catalyst (MoVTeNb-oxide) under a FEI XL30 environmental scanning electron microscope
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Data: Low resolution time-series projections
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The trick: Super-resolution EF…H <this slide needs lots of work>
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Super-resolution—the “program”
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Super-resolution for EM—not so easy = ≠
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= ≠
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<insert a timeseries projection showing some Biological material getting burned under the Electron microscopy>
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