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Real-time In vivo Diagnosis of Nasopharyngeal Carcinoma Using Rapid Fiber-Optic Raman Spectroscopy

机译:快速光纤拉曼光谱法实时诊断鼻咽癌

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摘要

We report the utility of a simultaneous fingerprint (FP) (i.e., 800-1800 cm-1) and high-wavenumber (HW) (i.e., 2800-3600 cm-1) fiber-optic Raman spectroscopy developed for real-time in vivo diagnosis of nasopharyngeal carcinoma (NPC) at endoscopy. A total of 3731 high-quality in vivo FP/HW Raman spectra (normal=1765; cancer=1966) were acquired in real-time from 204 tissue sites (normal=95; cancer=109) of 95 subjects (normal=57; cancer=38) undergoing endoscopic examination. FP/HW Raman spectra differ significantly between normal and cancerous nasopharyngeal tissues that could be attributed to changes of proteins, lipids, nucleic acids, and the bound water content in NPC. Principal components analysis (PCA) and linear discriminant analysis (LDA) together with leave-one subject-out, cross-validation (LOO-CV) were implemented to develop robust Raman diagnostic models. The simultaneous FP/HW Raman spectroscopy technique together with PCA-LDA and LOO-CV modeling provides a diagnostic accuracy of 93.1% (sensitivity of 93.6%; specificity of 92.6%) for nasopharyngeal cancer identification, which is superior to using either FP (accuracy of 89.2%; sensitivity of 89.9%; specificity of 88.4%) or HW (accuracy of 89.7%; sensitivity of 89.0%; specificity of 90.5%) Raman technique alone. Further receiver operating characteristic (ROC) analysis reconfirms the best performance of the simultaneous FP/HW Raman technique for in vivo diagnosis of NPC. This work demonstrates for the first time that simultaneous FP/HW fiber-optic Raman spectroscopy technique has great promise for enhancing real-time in vivo cancer diagnosis in the nasopharynx during endoscopic examination.
机译:我们报告了同时指纹(FP)(即800-1800 cm -1 )和高波数(HW)(即2800-3600 cm -1 )光纤拉曼光谱仪,用于在内窥镜下实时体内诊断鼻咽癌(NPC)。从95个受试者(正常= 57;正常= 57;正常= 67;正常= 95;正常= 57;正常)的实时组织中总共获得了3731份高质量的体内FP / HW拉曼光谱(正常= 1765;癌症= 1966)。癌症= 38)接受内窥镜检查。 FP / HW拉曼光谱在正常和癌性鼻咽组织之间存在显着差异,这可能归因于NPC中蛋白质,脂质,核酸和结合水含量的变化。进行主成分分析(PCA)和线性判别分析(LDA)以及留一法的交叉验证(LOO-CV),以开发鲁棒的拉曼诊断模型。同时FP / HW拉曼光谱技术与PCA-LDA和LOO-CV建模相结合可为鼻咽癌的诊断提供93.1%的诊断准确度(灵敏度为93.6%;特异性为92.6%),优于使用两种FP(准确性)单独使用拉曼技术时,灵敏度为89.2%;灵敏度为89.9%;特异性为88.4%)或硬件(准确性为89.7%;灵敏度为89.0%;特异性为90.5%)。进一步的接收器工作特性(ROC)分析再次证实了FP / HW同步拉曼技术在NPC体内诊断中的最佳性能。这项工作首次证明了同时FP / HW光纤拉曼光谱技术有望在内窥镜检查过程中增强鼻咽部的实时体内癌症诊断。

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