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Handheld confocal Raman microspectrometer for in-vivo skin cancer measurement

机译:手持式共焦拉曼微旋光器用于体内皮肤癌症测量

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Several studies have demonstrated Raman spectroscopy to be capable of tissue diagnosis with accuracy rivaling that of histopathologic analysis. This technique obtains biochemical-specific information noninvasively, and can eliminate the pain, time, and cost associated with biopsy and pathological analysis. Furthermore, when used in a confocal arrangement, Raman spectra can be obtained from localized regions of the tissue. Skin cancers are an ideal candidate for this emerging technology, due to their obvious accessibility and presentation at specific depths. However, most commercially available confocal Raman microspectrometers are large, rigid systems ill-suited for clinical application. We developed a bench-top confocal Raman microspectrometer using a portable external-cavity diode laser excitation source. This system was used to study several skin lesions in vitro. Results show the depth-resolved Raman spectra can diagnose in vitro skin lesions with 96% sensitivity, 88% specificity, and 86% pathological classification accuracy. Based on the success of this study, a portable Raman system with a handheld confocal microscope was developed for clinical application. Preliminary in vivo data show several distinct spectral differences between skin pathologies. Diagnostic algorithms are planned for this continuing study to assess the capability of Raman spectroscopy for clinical skin cancer diagnosis.
机译:几项研究表明,拉曼光谱能够具有组织诊断,精度靶向组织病理学分析。该技术无血量地获得生物化学特异性信息,并且可以消除与活检和病理分析相关的疼痛,时间和成本。此外,当以共聚焦布置使用时,可以从组织的局部区域获得拉曼光谱。由于特定深度的明显可访问性和呈现,皮肤癌是这种新兴技术的理想候选者。然而,大多数商业上可获得的共聚焦拉曼微助理器很大,刚性系统不适合临床应用。我们使用便携式外腔二极管激光激发源开发了一个台式共焦拉曼微旋光器。该系统用于研究几种皮肤病因子。结果表明,深度分辨的拉曼光谱可以诊断体外皮肤病变,灵敏度为96%,特异性88%,病理分类精度为86%。基于本研究的成功,开发了一种具有手持式共焦显微镜的便携式拉曼系统用于临床应用。体内数据初步显示皮肤病理学之间的几种不同的光谱差异。计划用于这种持续研究的诊断算法,以评估拉曼光谱对临床皮肤癌诊断的能力。

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