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Real-time absorption and scattering characterization of slab-shaped turbid samples obtained by a combination of angular and spatially resolved measurements

机译:结合角度和空间分辨测量获得的板状混浊样品的实时吸收和散射特性

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摘要

We present a fast and accurate method for real-time determination of the absorption coefficient, the scattering coefficient, and the anisotropy factor of thin turbid samples by using simple continuous-wave noncoherent light sources. The three optical properties are extracted from recordings of angularly resolved transmittance in addition to spatially resolved diffuse reflectance and transmittance. The applied multivariate calibration and prediction techniques are based on multiple polynomial regression in combination with a Newton-Raphson algorithm. The numerical test results based on Monte Carlo simulations showed mean prediction errors of approximately 0.5percent for all three optical properties within ranges typical for biological media. Preliminary experimental results are also presented yielding errors of approximately 5percent. Thus the presented methods show a substantial potential for simultaneous absorption and scattering characterization of turbid media.
机译:我们提出了一种使用简单的连续波非相干光源实时测定薄混浊样品的吸收系数,散射系数和各向异性因子的快速,准确方法。除空间分辨的漫反射率和透射率外,还从角度分辨的透射率记录中提取了三个光学特性。所应用的多元校准和预测技术是基于与牛顿-拉夫森算法结合的多项式回归。基于蒙特卡洛模拟的数值测试结果显示,对于三种典型的光学特性,在生物介质的典型范围内,平均预测误差约为0.5%。初步的实验结果也显示出大约5%的误差。因此,所提出的方法显示出同时吸收和散射浑浊介质的巨大潜力。

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