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用于组织分析的反向共焦偏振拉曼光谱法(RCPRS)。

Reverse confocal polarized Raman spectroscopy (RCPRS) for tissue analysis.

作者信息

Khan Khan Mohammad, Srivastava Amrita, Dutta Surjendu Bikash, Kumar Nitin, Majumder Shovan Kumar

机构信息

Raja Ramanna Centre for Advanced Technology, Indore, India.

Homi Bhabha National Institute (HBNI), Training School Complex, Mumbai, India.

出版信息

Lasers Med Sci. 2025 Apr 26;40(1):212. doi: 10.1007/s10103-025-04462-3.

Abstract

Confocal Raman spectroscopy (CRS) being one of the most widely used depth-sensitive techniques for measuring layer wise Raman characteristics of layered biological tissues faces two practical problems. First, the overall probing depth is limited in a given optical design of the CRS system and second, the objective lens used for focusing touches to surface of the target sample during probing of deeper sub-surface layers. To facilitate deeper probing in a given CRS system and to avoid lens-sample touching issue, an alternate scheme of depth-sensitive Raman measurement is presented. The scheme, named reverse confocal polarized Raman spectroscopy (RCPRS), uses an experimental arrangement of plane polarized illumination and orthogonal polarized detection in which depth-sensitive measurements are performed by moving the focal plane of the illumination beam away from the tissue surface unlike to CRS which obtains depth-separation by traversing across different depths of the target tissue. The performance of the RCPRS is evaluated using a non-biological phantom and a biological tissue. It is found that the introduction of polarization reduces the interference of the signals originating from the layers surrounding the target layer and thereby improving the depth-selectivity.

摘要

共焦拉曼光谱(CRS)作为测量分层生物组织各层拉曼特性最广泛使用的深度敏感技术之一,面临两个实际问题。第一,在CRS系统的给定光学设计中,整体探测深度有限;第二,在探测较深的次表层时,用于聚焦的物镜会接触到目标样品的表面。为了在给定的CRS系统中促进更深层次的探测并避免透镜与样品接触问题,提出了一种深度敏感拉曼测量的替代方案。该方案名为反向共焦偏振拉曼光谱(RCPRS),采用平面偏振照明和正交偏振检测的实验装置,其中通过将照明光束的焦平面从组织表面移开来进行深度敏感测量,这与CRS不同,CRS是通过穿过目标组织的不同深度来实现深度分离的。使用非生物模型和生物组织对RCPRS的性能进行了评估。发现偏振的引入减少了来自目标层周围各层信号的干扰,从而提高了深度选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1a8/12033110/d5e278b29352/10103_2025_4462_Fig1_HTML.jpg

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