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Video cards / Computing / GPGPU / Optics / 3D computer graphics / CUDA / Monte Carlo method / Photon / Radiative transfer equation and diffusion theory for photon transport in biological tissue / Physics / Computer hardware / Graphics hardware


Document Date: 2008-12-16 15:44:30


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City

Monte Carlo / /

Company

AMD / NVIDIA / GPU / Palmer and Ramanujam / Intel / /

Country

United States / /

Currency

USD / /

/

Facility

Stefan Andersson-Engels Lund University / /

IndustryTerm

pharmaceuticals / parallel computing / heterogenous media / biomedical applications / graphics processing / heterogeneous media / diverse network / graphics processor / faster and faster computer processors / computing / generalpurpose computing / data-parallel processor / random media / parallel processors / software architecture / turbid media / attractive tool / /

Organization

Swedish Research Council / Society of Photo-Optical Instrumentation Engineers / CPU MC / Department of Physics / Lund University / /

Person

M. Essenpreis / C. R. Simpson / Erik Alerstam / Tomas Svensson / Stefan Andersson-Engels / M. Cope / P. Marquet / M. Kohl / Steven Gratton / /

Position

inverse model for calculating tissue optical properties / adult human head / model / ” Appl / /

Product

MC / /

ProgrammingLanguage

EC / C / /

PublishedMedium

Microprocessor Report / the CUDA Programming Guide / /

RadioStation

WMC / /

Technology

data-parallel processor / graphics processor / faster and faster computer processors / spectroscopy / simulation / Parallel processing / /

URL

http /

SocialTag