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|a dc
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|a Husvogt, Lennart
|e author
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|a Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
|e contributor
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|a Giacomelli, Michael
|e contributor
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|a Yoshitake, Tadayuki
|e contributor
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|a Cahill, Lucas Christopher
|e contributor
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|a Ahsen, Osman Oguz
|e contributor
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|a Fujimoto, James G
|e contributor
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|a Vardeh, Hilde
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|a Sheykin, Yury
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|a Faulkner-Jones, Beverly E.
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|a Hornegger, Joachim
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|a Brooker, Jeff
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|a Cable, Alex
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|a Connolly, James L.
|e author
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|a Giacomelli, Michael
|e author
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|a Yoshitake, Tadayuki
|e author
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|a Cahill, Lucas Christopher
|e author
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|a Ahsen, Osman Oguz
|e author
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|a Fujimoto, James G
|e author
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|a Design of a portable wide field of view GPU-accelerated multiphoton imaging system for real-time imaging of breast surgical specimens
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|b SPIE,
|c 2018-04-17T13:54:26Z.
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|z Get fulltext
|u http://hdl.handle.net/1721.1/114749
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|a We present a portable multiphoton system designed for evaluating centimeter-scale surgical margins on surgical breast specimens in a clinical setting. The system is designed to produce large field of view images at a high frame rate, while using GPU processing to render low latency, video-rate virtual H&E images for real-time assessment. The imaging system and virtual H&E rendering algorithm are demonstrated by imaging unfixed human breast tissue in a clinical setting.
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|a en_US
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|a Article
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|t Multiphoton Microscopy in the Biomedical Sciences XVI
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