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首页> 外文期刊>Advances in Experimental Medicine and Biology >Monte-Carlo simulation of light transport for NIRS measurements in tumors of elliptic geometry.
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Monte-Carlo simulation of light transport for NIRS measurements in tumors of elliptic geometry.

机译:椭圆形肿瘤中NIRS测量的光传输的蒙特卡洛模拟。

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摘要

Propagation of light in a highly scattering medium such as biological tissue is difficult to study. For complex geometry and multilayer structures computer simulation has to be used for light transport analysis. A Monte Carlo model of light propagation in tissue has been applied for the purpose of better understanding of the results of near-infrared spectroscopy (NIRS) measurements in experimental tumors. The major objective was to determine the percentage and location of the illuminated area in tumor and to estimate fraction of NIRS signal originating from the underlying tissues. Values of optical parameters used in the model were taken from literature. Tumor shape was approximated with a rotational ellipsoid. Computer simulations were made for two positions of optodes: reflectance and transmittance mode. Results of simulations indicate that in both configurations the majority of signal originates from tumor and not from surrounding tissue. In reflectance mode collected light comes from limited area near the optode whereas in transmittance mode the collected light illuminate almost whole tumor. This difference between the two modes is valid for all tissue parameters.
机译:光在高度散射的介质(例如生物组织)中的传播很难研究。对于复杂的几何形状和多层结构,必须使用计算机仿真进行光传输分析。为了更好地了解实验性肿瘤中的近红外光谱(NIRS)测量结果,已应用组织中光传播的蒙特卡洛模型。主要目的是确定肿瘤中受照区域的百分比和位置,并估计源自下层组织的NIRS信号的比例。模型中使用的光学参数值取自文献。用旋转椭球近似肿瘤形状。对两个光电二极管位置进行了计算机仿真:反射率和透射率模式。模拟结果表明,在两种配置中,大多数信号均来自肿瘤而不是周围组织。在反射模式下,收集的光来自光极附近的有限区域,而在透射模式下,收集的光几乎照亮了整个肿瘤。两种模式之间的差异对所有组织参数均有效。

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