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Determination of optical properties in turbid medium based on time-resolved determination

机译:基于时间分辨测定的混浊介质中的光学性质测定

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摘要

In this article, we briefly described a time-correlated single photon counting (TCSPC) system specifically designed for extracting the optical properties in turbid medium. This system was evaluated by use of two sets of liquid tissue-simulating phantoms containing different concentrations of Intralipid-10% as scatters and India ink as absorbers. With the distribution of times of flight (DTOF) of photons measured by the TCSPC system, some featured parameters, such as the mean time of flight and the variance of DTOF were calculated. Based on these parameters, we developed a simple and fast method to obtain the absorption coefficient μ_a and reduced scattering coefficient μ_s of the turbid medium. Furthermore, the accuracy of the method was validated using the Monte Carlo simulations. It was found that the optical properties could be extracted with this method, which was much faster than the conventional curve-fitting procedure. Our method could be useful in on-line monitoring of optical properties of biological tissue.
机译:在本文中,我们简要介绍了一种时间相关的单光子计数(TCSPC)系统,该系统专门设计用于提取浑浊介质中的光学特性。通过使用两组液体组织模拟体模(包含不同浓度的Intralipid-10%作为分散剂,印度墨水作为吸收剂)来评估该系统。利用TCSPC系统测得的光子飞行时间(DTOF)的分布,计算出一些特征参数,如平均飞行时间和DTOF的方差。基于这些参数,我们开发了一种简单而快速的方法来获得浑浊介质的吸收系数μ_a和降低的散射系数μ_s。此外,使用蒙特卡洛模拟验证了该方法的准确性。已经发现,用这种方法可以提取光学性质,这比常规的曲线拟合程序快得多。我们的方法可用于在线监测生物组织的光学特性。

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