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[拉曼光谱法对鼻咽癌组织的离体测量]

[Measurement of nasopharyngeal carcinoma tissue ex vivo by Raman spectroscopy].

作者信息

Huang Wei, Pan Jian-ji, Chen Rong, Li Yong-zeng, Feng Shang-yuan, Xie Shu-sen, Zeng Hai-shan

机构信息

Key Laboratory of Optoelectronic Science and Technology for Medicine (Fujian Normal University), Ministry of Education, Fuzhou 350007, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2009 May;29(5):1304-7.

Abstract

Raman spectroscopy has shown its potential and advantages in detecting molecular changes associated with tissue pathology, which makes it possible to diagnose with optical methods non-invasively and real-time. A compact and rapid near-infrared (NIR)Raman system was developed using 785 nm diode laser, volume phase technology (VPT)holographic grating system and NIR intensified charge-coupled device (CCD)with a specially designed Raman fibre probe which can effectively reduce the interference of fluorescence and Rayleigh scattering, maximize the ability of Raman collection as well as correct the image aberration of a planar grating diffraction. Adopting this method, signal-to-noise ratio has been greatly improved and human tissue signals can be acquired in a short time. Raman signals from fat and musculature of fresh pork were measured and referenced for further optimization, then Raman spectra of nasopharyngeal carcinoma in vitro and the effect of storage time on them were measured in 1-5 s and discussed. The sensitivities and performance of the system will be further enhanced and more Raman data will be acquired and compared between normal and cancerous nasopharyngeal tissue, expecting to discover the statistical characteristics, which will benefit the diagnosis and treatment of early nasopharyngeal carcinoma or other tumors.

摘要

拉曼光谱在检测与组织病理学相关的分子变化方面已展现出其潜力和优势,这使得通过光学方法进行非侵入性实时诊断成为可能。利用785纳米二极管激光器、体相位技术(VPT)全息光栅系统以及近红外增强型电荷耦合器件(CCD),并结合特别设计的拉曼光纤探头,开发出了一种紧凑且快速的近红外(NIR)拉曼系统,该探头能够有效减少荧光和瑞利散射的干扰,最大化拉曼信号收集能力,同时校正平面光栅衍射的图像像差。采用这种方法,信噪比得到了极大提高,并且能够在短时间内获取人体组织信号。测量并参考了新鲜猪肉脂肪和肌肉组织的拉曼信号以进行进一步优化,然后在1至5秒内测量了鼻咽癌体外拉曼光谱及其储存时间对光谱的影响并展开讨论。该系统的灵敏度和性能将进一步提高,获取更多的拉曼数据并在正常与癌性鼻咽组织之间进行比较,有望发现统计特征,这将有助于早期鼻咽癌或其他肿瘤的诊断与治疗。

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