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Characterization of spatial and temporal variations in the optical properties of tissuelike media with diffuse reflectance imaging

机译:利用漫反射成像表征组织状介质光学特性的时空变化

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We describe a method to characterize spatial or temporal changes in the optical properties of turbid media using diffuse reflectance images acquired under broad-beam illumination conditions. We performed experiments on liquid phantoms whose absorption (mu(alpha)) and reduced scattering (mu(S)') coefficients were representative of those of biological tissues in the near infrared. We found that the relative diffuse reflectance R depends on mu(alpha) and mu(S)' only through the ratio and that dependence can be well described with an analytical expression previously reported in the literature [S. L. Jacques, Kluwer Academic Dordrecht (1996)]. We have found that this expression for R deviates from experimental values by no more than 8% for various illumination and detection angles within the range 0degrees-30degrees. Therefore, this analytical expression for R holds with good approximation even if the investigated medium presents curved or irregular surfaces. Using this expression, it is possible to translate spatial or temporal changes in the relative diffuse reflectance from a turbid medium into quantitative estimates of the corresponding changes of ( L/VL)(1/2). In the case of media with optical properties similar to those of tissue in the near infrared, we found that the changes of R/L should occur over a volume approximately 2 mm deep and 4 mm x 4 mm wide to apply this expression. (C) 2003 Optical Society of America. [References: 54]
机译:我们描述了一种方法,该方法使用在宽光束照明条件下获得的漫反射图像表征混浊介质的光学特性的空间或时间变化。我们对液体体模进行了实验,这些体模的吸收系数(muα)和减少的散射系数(mu(S)')代表了近红外生物组织的吸收系数。我们发现相对漫反射率R仅取决于muα和mu(S)',并且可以通过以前文献中报道的解析表达式很好地描述依赖性。 L. Jacques,Kluwer Academic Dordrecht(1996)]。我们已经发现,对于0度到30度范围内的各种照明角度和检测角度,R的表达式与实验值的偏差不超过8%。因此,即使所研究的介质呈现弯曲或不规则表面,该R的解析表达式仍具有良好的近似性。使用此表达式,可以将来自混浊介质的相对漫反射率的空间或时间变化转换为(L / VL)(1/2)的相应变化的定量估计。在具有与近红外组织光学特性相似的光学特性的介质中,我们发现R / L的变化应在大约2 mm深和4 mm x 4 mm宽的体积上发生,以应用此表达式。 (C)2003年美国眼镜学会。 [参考:54]

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