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Excitation-and-collection geometry insensitive fluorescence imaging of tissue-simulating turbid media

机译:组织模拟混浊介质的激发和收集几何不敏感荧光成像

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摘要

We present an imaging technique for the correction of geometrical effects in fluorescence measurement of optically thick, turbid media such as human tissue. Specifically, we use the cross-polarization method to reject specular reflection and enhance the diffusive backscattering of polarized fluorescence excitation light from the turbid media. We correct the nonuniformity of the image field caused by the excitation-and-collection geometry of a fluorescence imaging system by normalizing the fluorescence image to the cross-polarized reflection image. The ratio image provides a map of relative fluorescence yield, defined as the ratio of emerging fluorescence power to incident excitation, over the surface of an imaged homogeneous turbid medium when fluorescence excitation-and-collection geometries vary in a wide range. We investigate the mechanism of ratio imaging by using Monte Carlo modeling. Our findings show that this technique could have a potential use in the detection of early cancer, which usually starts from a superficial layer of tissue, based on the contrast in the tissue fluorescence of an early lesion and of the surrounding normal tissue.
机译:我们提出了一种成像技术,用于校正光学厚度较厚的混浊介质(例如人体组织)的荧光测量中的几何效应。具体来说,我们使用交叉偏振方法来拒绝镜面反射,并增强来自混浊介质的偏振荧光激发光的扩散反向散射。我们通过将荧光图像归一化为交叉偏振反射图像来校正由荧光成像系统的激发和收集几何形状引起的图像场的不均匀性。比率图像提供了当荧光激发和收集的几何形状在很大范围内变化时,在成像的均匀混浊介质表面上的相对荧光产量的图,该相对荧光产量定义为新兴荧光功率与入射激发的比率。我们通过使用蒙特卡洛模型研究比率成像的机理。我们的发现表明,基于早期病变和周围正常组织的组织荧光对比,该技术可能在早期癌症的检测中具有潜在的用途,该癌症通常从组织的表层开始。

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