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首页> 外文期刊>Medical Physics >An indeterministic Monte Carlo technique for fast time of flight photon transport through optically thick turbid media.
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An indeterministic Monte Carlo technique for fast time of flight photon transport through optically thick turbid media.

机译:一种不确定性的蒙特卡洛技术,用于通过光学上较厚的混浊介质快速传播光子。

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摘要

A time-resolved indeterministic Monte Carlo (IMC) simulation technique is proposed for the efficient construction of the early part of the temporal point spread function (TPSF) of visible or near infrared photons transmitted through an optically thick scattering medium. By assuming a detected photon is a superposition of photon components, the photon is repropagated from a point in the original path where a significant delay in forward propagation occurred. A weight is then associated with each subsequently detected photon to compensate for shorter components. The technique is shown to reduce the computation time by a factor of at least 4 when simulating the sub-200 picosecond region of the TPSF and hence provides a useful tool for analysis of single photon detection in transillumination imaging.
机译:提出了一种时间分辨的不确定蒙特卡罗(IMC)仿真技术,用于有效构建通过光学厚散射介质传输的可见或近红外光子的时间点扩展函数(TPSF)的早期部分。通过假设检测到的光子是光子分量的叠加,光子将从原始路径中发生正向传播明显延迟的一点重新传播。然后将权重与每个随后检测到的光子相关联,以补偿较短的分量。当模拟TPSF的200皮秒以下区域时,该技术可将计算时间减少至少4倍,因此为透照成像中的单光子检测分析提供了有用的工具。

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