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Artificial neural networks based estimation of optical parameters by diffuse reflectance imaging under in vitro conditions

机译:基于人工神经网络的光学参数在体外条件下的漫反射成像估计

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Optical parameters (properties) of tissue-mimicking phantoms are determined through noninvasive optical imaging. Objective of this study is to decompose obtained diffuse reflectance into these optical properties such as absorption and scattering coefficients. To do so, transmission spectroscopy is firstly used to measure the coefficients via an experimental setup. Next, the optical properties of each characterized phantom are input for Monte Carlo (MC) simulations to get diffuse reflectance. Also, a surface image for each single phantom with its known optical properties is obliquely captured due to reflectance-based geometrical setup using CMOS camera that is positioned at 5° angle to the phantoms. For the illumination of light, a laser light source at 633nm wavelength is preferred, because optical properties of different components in a biological tissue on that wavelength are nonoverlapped. During in vitro measurements, we prepared 30 different mixture samples adding clinoleic intravenous lipid emulsion...
机译:通过非侵入式光学成像确定模仿组织模型的光学参数(属性)。这项研究的目的是将获得的漫反射率分解为这些光学特性,例如吸收系数和散射系数。为此,首先使用透射光谱通过实验设置来测量系数。接下来,为蒙特卡罗(MC)模拟输入每个已表征模型的光学特性,以获得漫反射率。此外,由于使用了与模体成5°角的CMOS相机基于反射率的几何设置,因此倾斜地捕获了具有其已知光学特性的每个单个体模的表面图像。对于光的照明,优选633nm波长的激光源,因为在该波长上生物组织中不同组分的光学特性不重叠。在体外测量过程中,我们准备了30种不同的混合样品,并加入了油性静脉内脂质乳剂...

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