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Effects of scattering in layered biological tissue on imaging spectroscopy data

机译:分层生物组织中的散射对成像光谱数据的影响

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Abstract: Spectral imaging permits two-dimensional mapping of the reflectance properties of biological systems. However, imaging in turbid media involves pixel sizes that are comparable to or smaller than the mean photon path length. This implies that the spectrum measured at a given pixel in the image plane will be determined by manifold photon trajectories through an extended volume in the object, so there is not a uniquely defined path length. In addition, this implies nonlinear spectral mixing for systems with multiple layers and chromophores. Using Monte Carlo model, we have studied photon path distributions in the case of layered turbid systems and their effects on spectral imaging. In particular, we emphasize the effect of hemoglobin on imaging reflectance-mode hyperspectral data. !25
机译:摘要:光谱成像允许对生物系统的反射特性进行二维映射。但是,在混浊介质中成像涉及的像素大小可以与平均光子路径长度相比较或小于平均光子路径长度。这意味着在图像平面中给定像素处测得的光谱将由穿过物体中扩展体积的多条光子轨迹来确定,因此没有唯一定义的路径长度。另外,这意味着对于具有多层和生色团的系统来说,是非线性光谱混合。使用蒙特卡洛模型,我们研究了分层浑浊系统情况下的光子路径分布及其对光谱成像的影响。特别地,我们强调了血红蛋白对成像反射率模式高光谱数据的影响。 !25

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