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Determination of optical properties in heterogeneous turbid media using a cylindrical diffusing fiber

机译:使用圆柱形扩散纤维的异质混浊介质中光学性质的测定

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摘要

For interstitial photodynamic therapy (PDT), cylindrical diffusing fibers (CDF’s) are often used to deliver light. This study examines the feasibility and accuracy of using CDF’s to characterize the absorption (μa) and reduced scattering (μs′) coefficients of heterogeneous turbid media. Measurements were performed in tissue-simulating phantoms with μa between 0.1 and 1cm−1 and μs′ between 3 and 10 cm−1 with CDF’s 2 to 4 cm in length. Optical properties were determined by fitting the measured light fluence rate profiles at a fixed distance from the CDF axis using a heterogeneous kernel model in which the cylindrical diffusing fiber is treated as a series of point sources. The resulting optical properties were compared with independent measurement using a point source method. In a homogenous medium, we are able to determine the absorption coefficient μa using a value of μs′ determined a priori (uniform fit) or μs′ obtained by fitting (variable fit) with standard(maximum) deviations of 6% (18%) and 18% (44%), respectively. However, the CDF method is found to be insensitive to variations in μs′, thus requiring a complementary method such as using a point source for determination of μs′. The error for determining μa decreases in very heterogeneous turbid media because of the local absorption extremes. The data acquisition time for obtaining the one-dimensional optical properties distribution is less than 8 seconds. This method can result in dramatically improved accuracy of light fluence rate calculation for CDFs for prostate PDT in vivo when same model and geometry is used for forward calculations using the extrapolated tissue optical properties.
机译:对于间隙光动力疗法(PDT),通常使用圆柱状扩散纤维(CDF)来传递光。这项研究检验了使用CDF表征异质混浊介质的吸收系数(μa)和减小的散射系数(μs')的可行性和准确性。测量是在组织模拟体模中进行的,模型中的μa在0.1至1cm -1 和μs'在3至10cm -1 之间,CDF的长度为2至4 cm。通过使用异质核模型拟合测量的光密度速率分布来确定光学特性,该距离与CDF轴相距固定距离,在该模型中,圆柱形漫射纤维被视为一系列点光源。使用点光源法将所得光学性能与独立测量结果进行比较。在同质介质中,我们能够使用先验(均匀拟合)确定的μs'值或通过拟合(可变拟合)以6%(18%)的标准(最大)偏差获得的μs'值来确定吸收系数μa和18%(44%)。但是,发现CDF方法对μs'的变化不敏感,因此需要一种补充方法,例如使用点源确定μs'。由于局部吸收极值,在非常不均匀的混浊介质中,确定μa的误差会减小。用于获得一维光学特性分布的数据获取时间小于8秒。当将相同的模型和几何形状用于使用外推组织光学特性进行正向计算时,此方法可以显着提高体内用于前列腺PDT的CDF的光通量率计算的准确性。

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