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Rapid NIR Raman spectroscopy for in vivo skin tissue characterization and evaluation

机译:快速的NIR拉曼光谱体体内皮肤组织表征和评估

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Raman spectroscopy is a noninvasive, nondestructive analytical method capable of determining the biochemical constituents based on molecular vibrations. It does not require sample preparation or pretreatment. However, the use of Raman spectroscopy for in vivo applications will depend on the feasibility of measuring Raman spectra in a relatively short time period (a few seconds). In this work, a rapid dispersive-type near-infrared (NIR) Raman spectroscopy system and a skin Raman probe were developed to facilitate real-time, noninvasive, in vivo human skin measurements. Spectrograph image aberration was corrected by a parabolic-line fiber array, permitting complete CCD vertical binning, thereby yielding a 3.3 -16-fold improvement in signal-to-noise ratio. Good quality in vivo skin NIR Raman spectra free of interference from fiber fluorescence and silica Raman scattering can be acquired in less than 5 seconds, which greatly facilitates practical noninvasive tissue characterization and clinical diagnosis. With the rapid Raman system, we have conducted Raman spectroscopy measurements on 50 normal volunteers. A total of 25 body sites were measured for each subject. The spectral measurements were performed from 800 cm~(-1) to 1800 cm~(-1) with a 785 nm diode laser as the excitation source. Raman signatures of proteins, lipids, and nucleic acids are clearly identifiable from the measured spectra. We found that within the same subject, skin Raman signals are significantly different for different body sites, which presumably reflects differences in tissue chemical composition according to body sites, while the inter-subject differences of skin Raman signals for a given body site are relatively small. We have also demonstrated that Raman spectral signature changes from normal to malignant skin diseases. Systematic measurements of various skin diseases are in progress.
机译:拉曼光谱是一种非侵入性的非破坏性分析方法,能够基于分子振动确定生化成分。它不需要样品制备或预处理。然而,在体内应用中使用拉曼光谱将取决于在相对短的时间段内测量拉曼光谱的可行性(几秒钟)。在这项工作中,开发了一种快速分散型近红外(NIR)拉曼光谱系统和皮肤拉曼探针,以便实时,非侵入性,体内人体皮肤测量。光谱仪图像像差通过抛物线线光纤阵列校正,允许完全的CCD垂直排放,从而产生3.3-16倍的信噪比。在不到5秒的情况下,可以在不到5秒内获得无纤维荧光和二氧化硅拉曼散射的良好质量,从纤维荧光和二氧化硅拉曼散射中获得,这极大地促进了实际的非侵入组织特征和临床诊断。通过快速拉曼系统,我们在50个正常志愿者上进行了拉曼光谱测量。每个受试者测量总共25个体位。使用785nm二极管激光器为激发源,从800cm〜(-1)至1800cm〜(-1)中进行光谱测量。从测量的光谱清楚地识别蛋白质,脂质和核酸的拉曼签名。我们发现,在同一主题中,皮肤拉曼信号对于不同的身体部位显着不同,这可能是根据体位的影响,这可能反映了组织化学组合物的差异,而给定体位的皮肤拉曼信号的间歇差异相对较小。我们还证明了拉曼光谱特征从正常到恶性皮肤病变化。各种皮肤病的系统测量正在进行中。

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