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Rapid detection of nasopharyngeal cancer using Raman spectroscopy and multivariate statistical analysis

机译:拉曼光谱和多元统计分析快速检测鼻咽癌

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摘要

Optical spectroscopic techniques, including Raman spectroscopy, have shown promise for in vivo cancer diagnostics in a variety of organs. In this study, the potential use of a home-made Raman spectral system with a millimeter order excitation laser spot size combined with a multivariate statistical analysis for the rapid detection and discrimination of nasopharyngeal cancer from normal nasopharyngeal tissue was evaluated. Raman scattering signals were acquired from 16 normal and 32 nasopharyngeal carcinoma tissue samples. Linear discriminant analysis (LDA) based on principal component analysis (PCA) and partial least squares (PLS) were employed to generate diagnostic algorithms for the classification of different nasopharyngeal tissue types. Spectral differences in Raman spectra between the two types of tissues were revealed; the normalized intensities of Raman peaks at 1,001, 1,207 and 1,658 cm−1 were more intense for nasopharyngeal carcinoma tissue compared to normal tissue, while Raman bands at 848, 936 and 1,446 cm−1 were stronger in normal nasopharyngeal samples. The PCA-LDA algorithm together with leave-one-out cross validation yields a diagnostic sensitivity of 81% and a specificity of 87%, while the PLS method coupled with subwindow permutation analysis improves the diagnostic sensitivity and specificity to 85 and 88%, respectively. Therefore, Raman spectroscopy combined with PCA-LDA/PLS demonstrated good potential for improving the clinical diagnosis of nasopharyngeal cancers.
机译:包括拉曼光谱学在内的光学光谱技术已显示出在各种器官中进行体内癌症诊断的希望。在这项研究中,评估了将自制的拉曼光谱系统与毫米级激发激光光斑大小结合多变量统计分析在从正常鼻咽组织中快速检测和区分鼻咽癌的潜在用途。从16个正常和32个鼻咽癌组织样本中获取拉曼散射信号。基于主成分分析(PCA)和偏最小二乘(PLS)的线性判别分析(LDA)用于生成诊断算法,用于对不同的鼻咽组织类型进行分类。揭示了两种组织之间拉曼光谱的光谱差异。与正常组织相比,鼻咽癌组织在1,001、1,207和1,658 cm -1 处的拉曼峰归一化强度更高,而在848、936和1,446 cm -1 <在正常的鼻咽样本中更强。 PCA-LDA算法和留一法交叉验证可产生81%的诊断灵敏度和87%的特异性,而PLS方法与子窗口置换分析相结合可将诊断灵敏度和特异性分别提高到85%和88% 。因此,拉曼光谱结合PCA-LDA / PLS表现出了改善鼻咽癌临床诊断的良好潜力。

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