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Opto-acoustic measurement of the local light absorption coefficient in turbid media: 1. Monte-Carlo simulation of laser fluence distribution at the beam axis beneath the surface of a turbid medium

机译:混浊介质中局部光吸收系数的光声测量:1.在混浊介质表面下方的光束轴处的激光注量分布的蒙特卡洛模拟

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摘要

A new method for measuring the local light absorption coefficient in turbid media, for example, biological tissues, is proposed. The method is based on the fact that the amplitude of the excited opto-acoustic (OA) signal is proportional to the absorbed laser power density (the product of the light absorption coefficient and the laser fluence) at the medium interface. In the first part of the paper, the influence of the laser beam diameter, the light absorption and reduced scattering coefficients on the maximal amplitude of the laser fluence at the laser beam axis in the near-surface layer of the turbid medium is studied by using the Monte-Carlo simulation. The conditions are predicted under which the amplitude of the OA signal detected in a transparent medium in contact with the scattering medium should remain proportional to the light absorption coefficient of the medium under study, when the scattering coefficient in it changes more than twice. The results of the numerical simulation are used for the theoretical substantiation of the OA method being proposed.
机译:提出了一种测量混浊介质(例如生物组织)中局部光吸收系数的新方法。该方法基于以下事实:在介质界面处,激发的光声(OA)信号的幅度与吸收的激光功率密度(光吸收系数和激光能量密度的乘积)成比例。在本文的第一部分中,研究了激光束直径,光吸收系数和减小的散射系数对混浊介质近表层中激光束轴在激光束轴上的最大振幅的影响。蒙特卡洛模拟。预测了在与散射介质接触的透明介质中检测到的OA信号的幅度应保持与所研究介质的光吸收系数成比例的条件,条件是该介质中的散射系数变化两倍以上。数值模拟的结果被用于所提出的OA方法的理论证实。

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