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Polymer-capped fiber-optic Raman probe for non-invasive Raman spectroscopy

机译:用于无创拉曼光谱的聚合物封端光纤拉曼探针

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摘要

Advances in fiber optic probe design are moving Raman spectroscopy into the clinic, although there remain important practical problems. While much effort has been devoted to minimizing Raman and fluorescence background from fibers, less attention has been given to the need to generate reference Raman signals that can correct for variations in tissue albedo, which is important in quantifying changes in tissue composition. To address this shortcoming, we have developed a fiber optic probe that incorporates a fluorinated ethylene-propylene copolymer (FEP) cap at the end of each excitation fiber. Transmission of laser light through the transparent cap generates a 732 cm~(-1) Raman band whose intensity scales linearly with the laser power delivered to the tissue of interest. In our first design, the FEP cap functions as a waveguide with only a small insertion loss (~5%). Laser transmission through 1 mm of the polymer is sufficient to generate a usable reference Raman signal. We show the application of the probe to quantitative non-invasive Raman spectroscopy of animal tissues using rat leg phantoms as models. Ex-vivo Raman spectroscopy of excised rat tibia supports the use of the probe for spectroscopy of various tissues. These results provide proof of principle that the Raman probe can be used in multiple spectroscopic applications.
机译:尽管仍然存在重要的实际问题,但是光纤探针设计的进步正在将拉曼光谱学推向临床。尽管已尽最大努力使纤维的拉曼和荧光背景最小化,但对产生可校正组织反照率变化的参考拉曼信号的注意却较少,这对量化组织组成的变化很重要。为了解决这一缺点,我们开发了一种光纤探头,该光纤探头在每条激励光纤的末端都装有氟化乙烯-丙烯共聚物(FEP)帽。透过透明帽的激光传输会产生732 cm〜(-1)拉曼带,其强度与传递到目标组织的激光功率成线性比例关系。在我们的第一个设计中,FEP帽用作波导,插入损耗很小(〜5%)。通过1毫米聚合物的激光透射足以产生可用的参考拉曼信号。我们展示了该探针在使用大鼠腿部幻象作为模型的动物组织的定量非侵入性拉曼光谱学中的应用。切除的大鼠胫骨的离体拉曼光谱支持将探针用于各种组织的光谱。这些结果提供了拉曼探针可用于多种光谱应用的原理证明。

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