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A fiber optic probe design to measure depth- limited optical properties in-vivo with Low-coherence Enhanced Backscattering (LEBS) Spectroscopy

机译:光纤探头设计可通过低相干增强背向散射(LEBS)光谱法测量体内深度受限的光学特性

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摘要

Low-coherence enhanced backscattering (LEBS) spectroscopy is an angular resolved backscattering technique that is sensitive to sub-diffusion light transport length scales in which information about scattering phase function is preserved. Our group has shown the ability to measure the spatial backscattering impulse response function along with depth-selective optical properties in tissue ex-vivo using LEBS. Here we report the design and implementation of a lens-free fiber optic LEBS probe capable of providing depth-limited measurements of the reduced scattering coefficient in-vivo. Experimental measurements combined with Monte Carlo simulation of scattering phantoms consisting of polystyrene microspheres in water are used to validate the performance of the probe. Additionally, depth-limited capabilities are demonstrated using Monte Carlo modeling and experimental measurements from a two-layered phantom.
机译:低相干增强背向散射(LEBS)光谱技术是一种角度分辨的背向散射技术,对子扩散光传输长度标度敏感,其中保留了有关散射相位功能的信息。我们的小组已经展示了使用LEBS测量组织中的空间反向散射脉冲响应功能以及深度选择性光学特性的能力。在这里,我们报告了无透镜光纤LEBS探头的设计和实现,该探头能够提供限度的体内减小的散射系数测量值。实验测量结合蒙特卡洛模拟法对水中由聚苯乙烯微球组成的散射体模进行了验证,以验证探针的性能。此外,使用蒙特卡洛建模和来自两层模型的实验测量结果证明了深度受限的功能。

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