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用于表征复杂生物材料的红外和拉曼成像:结肠组织的比较形态光谱研究

Infrared and Raman imaging for characterizing complex biological materials: a comparative morpho-spectroscopic study of colon tissue.

作者信息

Nallala Jayakrupakar, Piot Olivier, Diebold Marie-Danièle, Gobinet Cyril, Bouché Olivier, Manfait Michel, Sockalingum Ganesh D

机构信息

MÉDIAN Biophotonique et Technologies pour la Santé , Université de Reims Champagne-Ardenne, FRE CNRS 3481 MEDyC, UFR de Pharmacie, SFR Cap Santé , 51 rue Cognacq-Jay, 51096 Reims cedex, France.

出版信息

Appl Spectrosc. 2014;68(1):57-68. doi: 10.1366/13-07170.

Abstract

Complementary diagnostic methods to conventional histopathology are currently being investigated for developing rapid and objective molecular-level understanding of various disorders, especially cancers. Spectral histopathology using vibrational spectroscopic imaging has been put in the frontline as potentially promising in this regard as it provides a "spectral fingerprint" of the biochemical composition of cells and tissues. In order to ascertain the feasible conditions of vibrational spectroscopic methods for tissue-imaging analysis, vibrational multimodal imaging (infrared transmission, infrared-attenuated total reflection, and Raman imaging) of the same colon tissue has been implemented. The spectral images acquired were subjected to multivariate clustering analysis in order to identify on a molecular level the constituent histological organization of the colon tissue such as the epithelium, connective tissue, etc., by comparing the cluster images with the histological reference images. Based on this study, a comparative analysis of important factors involved in the vibrational multimodal imaging approaches such as image resolution, time constraints, their advantages and limitations, and their applicability to biological tissues has been carried out. Out of the three different vibrational imaging modalities tested, infrared-attenuated total reflection mode of imaging appears to provide a good compromise between the tissue histology and the time constraints in achieving similar image contrast to that of Raman imaging at an approximately 33-fold faster measurement time. The present study demonstrates the advantages, the limitations of the important parameters involved in vibrational multimodal imaging approaches, and their potential application toward imaging of biological tissues.

摘要

目前正在研究传统组织病理学的补充诊断方法,以快速、客观地从分子水平了解各种疾病,尤其是癌症。利用振动光谱成像的光谱组织病理学在这方面已处于前沿,因为它能提供细胞和组织生化成分的“光谱指纹”。为确定振动光谱方法用于组织成像分析的可行条件,已对同一结肠组织进行了振动多模态成像(红外透射、红外衰减全反射和拉曼成像)。对获取的光谱图像进行多变量聚类分析,通过将聚类图像与组织学参考图像比较,从分子水平识别结肠组织的组成组织学结构,如上皮组织、结缔组织等。基于这项研究,对振动多模态成像方法中涉及的重要因素进行了比较分析,如图像分辨率、时间限制、其优点和局限性以及它们对生物组织的适用性。在所测试的三种不同振动成像模式中,红外衰减全反射成像模式似乎在组织学和时间限制之间提供了良好的平衡,在测量时间快约33倍的情况下,能实现与拉曼成像相似的图像对比度。本研究展示了振动多模态成像方法中涉及的重要参数的优点、局限性及其在生物组织成像中的潜在应用。

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