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Evaluation of a multi-layer diffuse reflectance spectroscopy system using optical phantoms

机译:使用光学体模评估多层漫反射光谱系统

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A fiber probe-based device for assessing microcirculatory parameters, especially red blood cell (RBC) tissue fraction, their oxygen saturation and speed resolved perfusion, has been evaluated using state-of-the-art multi-layer tissue simulating phantoms. The device comprises both diffuse reflectance spectroscopy (DRS) at two source-detector separations (0.4 and 1.2 mm) and laser Doppler flowmetry (LDF) and use an inverse Monte Carlo method for identifying the parameters of a multi-layered tissue model. First, model parameters affecting scattering, absorption and geometrical parameters are fitted to measured DRS spectra, then speed parameters are fitted to LDF spectra. In this paper, the accuracy of the spectral parameters is evaluated. The measured spectral shapes at the two source-detector separations were in good agreement with forward calculated spectral shapes. In conclusion, the multi-layer skin model based on spectral features of the included chromophores, can reliably estimate the tissue fraction of RBC, its oxygen saturation and the reduced scattering coefficient spectrum of the tissue. Furthermore, it was concluded that some freedom in the relative intensity difference between the two DRS channels is necessary in order to compensate for non-modeled surface structure effects.
机译:使用最新的多层组织模拟体模评估了一种基于纤维探针的设备,用于评估微循环参数,尤其是红细胞(RBC)组织分数,其氧饱和度和速度分辨的灌注。该设备既包括两个源探测器间隔(0.4和1.2 mm)处的漫反射光谱法(DRS)和激光多普勒血流仪(LDF),又使用反向蒙特卡洛方法来识别多层组织模型的参数。首先,将影响散射,吸收和几何参数的模型参数拟合到测得的DRS光谱,然后将速度参数拟合到LDF光谱。在本文中,评估了光谱参数的准确性。在两个源-检测器分离处测得的光谱形状与正向计算的光谱形状非常吻合。总之,基于包含的发色团的光谱特征的多层皮肤模型可以可靠地估计RBC的组织比例,其氧饱和度和降低的组织散射系数谱。此外,得出的结论是,两个DRS通道之间的相对强度差异中的一些自由度是必要的,以便补偿未建模的表面结构效应。

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