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Video cards / Nvidia / Parallel computing / GPGPU / CUDA / Thread / Nvidia Quadro / Memory barrier / Multi-core processor / Computing / Concurrent computing / Computer hardware


This is the author’s version of the work. The definitive work was published in Proceedings of the SPIE: Medical Imaging 2011: Image Processing, Lake Buena Vista, Orlando, FL, USA, February 12-17, 2011. Detector Defect
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Document Date: 2011-01-15 11:56:21


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File Size: 4,00 MB

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City

Orlando / Forchheim / /

Company

Software Co / NVIDIA / GPU / The times / Siemens / /

Country

Germany / United States / /

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Facility

pipeline of Figure / University of Erlangen-Nuremberg / /

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IndustryTerm

commodity graphics hardware / subsequent algorithm / scalar streaming processors / medical imaging / intensive algorithms / memory intensive applications / image processing / dose feedback algorithm / streaming applications / histogram analysis algorithm / medical image processing application / streaming processors / imaging / computational intensive algorithms / multi-core and many-core processors / /

Organization

University of Erlangen-Nuremberg / Department of Computer Science / /

Person

Frank Hanniga / Gerhard Litzb / Heinz Horneggerb / Jürgen Teicha / Buena Vista / /

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Position

author / programmer / /

Product

Quadro FX 5800 / /

Technology

computationally intensive algorithms / 240 streaming processors / X-ray / X-ray system / 240 processors / computational intensive algorithms / eight scalar streaming processors / streaming processors / ten algorithms / operating system / 4.1 Dose Feedback The dose feedback algorithm / subsequent algorithm / shared memory / Image Processing / MRI / two algorithms / dose feedback algorithm / 4.2 Histogram Analysis The histogram analysis algorithm / Medical Imaging / normalized using the dose feedback algorithm / /

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