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Use of a coherent fiber bundle for multi-diameter single fiber reflectance spectroscopy

机译:相干光纤束在多直径单光纤反射光谱中的用途

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Multi-diameter single fiber reflectance (MDSFR.) spectroscopy enables quantitative measurement of tissue optical properties, including the reduced scattering coefficient and the phase function parameter 7. However, the accuracy and speed of the procedure are currently limited by the need for co-localized measurements using multiple fiber optic probes with different fiber diameters. We here demonstrate the use of a coherent fiber bundle acting as a single fiber with a variable diameter for the purposes of MDSFR spectroscopy. We have previously shown that the spectral reflectance and effective path lengths measured by the fiber bundles are equivalent to those measured by single solid-core fibers for fiber diameters between 0.4 and 1.0 mm (r ≥ 0.997). Based on these results, the coherent fiber bundle was deemed suitable for use as a variable-diameter fiber in clinical MDSFR quantification of tissue optical properties. In this paper we discuss the details of the setup, the limitations of the current experimental design as well as future improvements of the setup.
机译:多直径单纤维反射率(MDSFR。)光谱能够定量测量组织的光学特性,包括降低的散射系数和相位函数参数7。但是,该过程的准确性和速度目前受到共定位要求的限制。使用具有不同光纤直径的多个光纤探头进行测量。我们在这里展示了使用相干光纤束作为具有可变直径的单根光纤来进行MDSFR光谱分析的目的。先前我们已经表明,对于纤维直径在0.4到1.0毫米之间(r≥0.997)的纤维束,光谱反射率和有效路径长度与单根实芯纤维所测量的光谱反射率和有效路径长度相同。基于这些结果,相干光纤束被认为适合在组织光学特性的临床MDSFR定量中用作可变直径光纤。在本文中,我们讨论了设置的细节,当前实验设计的局限性以及设置的未来改进。

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