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使用硅橡胶体评估具有连续可变源-探测器间距的新型非接触光谱和空间分辨反射率设置。

Evaluation of a novel noncontact spectrally and spatially resolved reflectance setup with continuously variable source-detector separation using silicone phantoms.

机构信息

Technische Universität Berlin, Institut für Optik und Atomare Physik, 10587 Berlin,

出版信息

J Biomed Opt. 2010 Nov-Dec;15(6):067009. doi: 10.1117/1.3526367.

Abstract

We present a new variant of a noncontact, oblique incidence spatially resolved reflectance setup. The continuously variable source detector separation enables adaptation to high and low albedo samples. Absorption (μ(a)) and reduced scattering coefficients (μ(') (s)) are determined in the wavelength range of 400-1000 nm using a lookup table, calculated by a Monte Carlo simulation of the light transport. The method is characterized by an silicone phantom study covering a wide parameter range 0.01 mm(-1) ≤ μ(a) ≤ 2.5 mm(-1) and 0.2 mm(-1) ≤ μ(') (s) ≤ 10 mm(-1), which includes the optical parameters of tissue in the visible and near infrared. The influence of the incident angle and the detection aperture on the simulated remission was examined. Using perpendicular incidence and 90-deg detection aperture in the Monte Carlo simulation in contrast to the experimental situation with 30-deg incidence and 4.6-deg detection aperture is shown to be valid for the parameter range μ(') (s) > 1 mm(-1) and μ(a) < 1.2 mm(-1). A Mie calculation is presented, showing that a decreasing reduced scattering coefficient for increasing absorption can be the consequence of real physics instead of cross talk.

摘要

我们提出了一种新的非接触式、斜入射空间分辨反射率设置。连续可变的源探测器分离使它能够适应高反射率和低反射率的样品。在 400-1000nm 的波长范围内,使用查找表通过蒙特卡罗模拟光传输来确定吸收系数(μ(a))和散射系数(μ(')(s))。该方法的特点是用硅橡胶体模进行了广泛参数范围(0.01mm(-1) ≤ μ(a) ≤ 2.5mm(-1) 和 0.2mm(-1) ≤ μ(')(s) ≤ 10mm(-1))的研究,包括可见和近红外范围内组织的光学参数。研究了入射角和检测孔径对模拟透过率的影响。与实验情况相比,在蒙特卡罗模拟中使用垂直入射和 90 度检测孔径而不是 30 度入射和 4.6 度检测孔径,对于μ(')(s)>1mm(-1)和μ(a)<1.2mm(-1)的参数范围是有效的。提出了一种 Mie 计算,表明对于吸收系数的增加散射系数的减小可能是真实物理的结果而不是串扰。

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