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Single-Fiber Reflectance Spectroscopy of Isotropic-Scattering Medium: An Analytic Perspective to the Ratio-of-Remission in Steady-State Measurements

机译:各向同性散射介质的单纤维反射光谱:稳态测量中传输比的解析视角

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Recent focused Monte Carlo and experimental studies on steady-state single-fiber reflectance spectroscopy (SfRS) from a biologically relevant scattering medium have revealed that, as the dimensionless reduced scattering of the medium increases, the SfRS intensity increases monotonically until reaching a plateau. The SfRS signal is semi-empirically decomposed to the product of three contributing factors, including a ratio-of-remission (RoR) term that refers to the ratio of photons remitting from the medium and crossing the fiber-medium interface over the total number of photons launched into the medium. The RoR is expressed with respect to the dimensionless reduced scattering parameter μ s ′ d f i b , where μ s ′ is the reduced scattering coefficient of the medium and d f i b is the diameter of the probing fiber. We develop in this work, under the assumption of an isotropic-scattering medium, a method of analytical treatment that will indicate the pattern of RoR as a function of the dimensionless reduced scattering of the medium. The RoR is derived in four cases, corresponding to in-medium (applied to interstitial probing of biological tissue) or surface-based (applied to contact-probing of biological tissue) SfRS measurements using straight-polished or angle-polished fiber. The analytically arrived surface-probing RoR corresponding to single-fiber probing using a 15° angle-polished fiber over the range of μ s ′ d f i b = ( 10 − 2   10 3 ) agrees with previously reported similarly configured experimental measurement from a scattering medium that has a Henyey–Greenstein scattering phase function with an anisotropy factor of 0.8. In cases of a medium scattering light anisotropically, we propose how the treatment may be furthered to account for the scattering anisotropy using the result of a study of light scattering close to the point-of-entry by Vitkin et al. (Nat. Commun. 2011, doi:10.1038comms1599).
机译:最近针对生物相关散射介质的稳态单纤维反射光谱(SfRS)进行的蒙特卡洛和实验研究表明,随着介质无量纲减少散射的增加,SfRS强度会单调增加,直至达到平稳状态。 SfRS信号被半经验分解为三个影响因素的乘积,其中包括发射率(RoR)项,指从介质发射并穿过光纤介质界面的光子在光子总数中的比率。光子进入介质。 RoR相对于无量纲的减小的散射参数μs'd f i b表示,其中μs'是介质的减小的散射系数,而d f i b是探测光纤的直径。在这项工作的基础上,我们在各向同性散射介质的假设下发展了一种分析处理方法,该方法将表明RoR的模式与介质的无量纲减少散射有关。 RoR在四种情况下得出,分别对应于使用笔直抛光或角度抛光光纤的中等(适用于生物组织的间质探测)或基于表面的(适用于生物组织的接触探测)SfRS测量。解析后到达的表面探测RoR对应于在μs dfib =(10 − 2 15 10 3)范围内使用15°角度抛光的光纤进行单纤维探测,与先前报道的类似配置的散射介质实验测量结果相符,具有Henyey–Greenstein散射相位函数,各向异性因子为0.8。在介质各向异性地散射光的情况下,我们建议使用Vitkin等人对接近入射点的光散射进行研究的结果,进一步处理该方法以解决散射各向异性。 (Nat.Commun.2011,doi:10.1038 / ncomms1599)。

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