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Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Triangulated shapes of human head layer boundaries employed in simulations: (a)

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Presentation on theme: "Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Triangulated shapes of human head layer boundaries employed in simulations: (a)"— Presentation transcript:

1 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Triangulated shapes of human head layer boundaries employed in simulations: (a) skin, (b) skull, (c) gray matter. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

2 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Execution time of the different versions of Monte Carlo (MC) simulation code (105 photons) at CPU. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

3 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Execution time of the different versions of MC simulation code (105 photons) at Intel Xeon Phi coprocessor. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

4 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Execution time of the MC simulation code at different hardware. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

5 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Speed-up of the MC simulation code for GPU (NVidia Tesla M2070, 448 threads) and MIC (Intel Xeon Phi SE10X, 240 threads) against CPU (Intel Xeon X5680, 6 threads). Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

6 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Three-dimensional (3-D) photon trajectory map for source–detector separation of 40 mm and wavelength of 900 nm. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002

7 Date of download: 6/1/2016 Copyright © 2016 SPIE. All rights reserved. Two-dimensional (2-D) photon trajectory maps for source–detector separations of 20 (top), 30 (middle), and 40 (bottom) mm for (a) 830 and (b) 915 nm. Figure Legend: From: Acceleration of Monte Carlo simulation of photon migration in complex heterogeneous media using Intel many-integrated core architecture J. Biomed. Opt. 2015;20(8):085002. doi:10.1117/1.JBO.20.8.085002


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