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分层组织中的快照深度敏感拉曼光谱学。

Snapshot depth sensitive Raman spectroscopy in layered tissues.

作者信息

Liu Wei, Ong Yi Hong, Yu Xiao Jun, Ju Jian, Perlaki Clint Michael, Liu Lin Bo, Liu Quan

出版信息

Opt Express. 2016 Dec 12;24(25):28312-28325. doi: 10.1364/OE.24.028312.

Abstract

Depth sensitive Raman spectroscopy has been shown effective in the detection of depth dependent Raman spectra in layered tissues. However, the current techniques for depth sensitive Raman measurements based on fiber-optic probes suffer from poor depth resolution and significant variation in probe-sample contact. In contrast, those lens based techniques either require the change in objective-sample distance or suffer from slow spectral acquisition. We report a snapshot depth-sensitive Raman technique based on an axicon lens and a ring-to-line fiber assembly to simultaneously acquire Raman signals emitted from five different depths in the non-contact manner without moving any component. A numerical tool was developed to simulate ray tracing and optimize the snapshot depth sensitive setup to achieve the tradeoff between signal collection efficiency and depth resolution for Raman measurements in the skin. Moreover, the snapshot system was demonstrated to be able to acquire depth sensitive Raman spectra from not only transparent and turbid skin phantoms but also from ex vivo pork tissues and in vivo human thumbnails when the excitation laser power was limited to the maximum permissible exposure for human skin. The results suggest the great potential of snapshot depth sensitive Raman spectroscopy in the characterization of the skin and other layered tissues in the clinical setting or other similar applications such as quality monitoring of tablets and capsules in pharmaceutical industry requiring the rapid measurement of depth dependent Raman spectra.

摘要

深度敏感拉曼光谱已被证明在检测分层组织中深度依赖的拉曼光谱方面是有效的。然而,目前基于光纤探头的深度敏感拉曼测量技术存在深度分辨率差和探头与样品接触显著变化的问题。相比之下,那些基于透镜的技术要么需要改变物镜与样品的距离,要么存在光谱采集速度慢的问题。我们报道了一种基于轴锥透镜和环行光纤组件的快照深度敏感拉曼技术,无需移动任何部件即可非接触地同时采集从五个不同深度发射的拉曼信号。开发了一种数值工具来模拟光线追踪并优化快照深度敏感设置,以在皮肤拉曼测量中实现信号收集效率和深度分辨率之间的权衡。此外,当激发激光功率限制在人体皮肤的最大允许暴露量时,该快照系统不仅能够从透明和浑浊的皮肤模型中获取深度敏感拉曼光谱,还能从离体猪肉组织和活体人体指甲中获取。结果表明,快照深度敏感拉曼光谱在临床环境中对皮肤和其他分层组织进行表征以及在制药行业中对片剂和胶囊进行质量监测等其他类似应用(需要快速测量深度依赖的拉曼光谱)方面具有巨大潜力。

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