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Multimodal Fiber-Probe Spectroscopy as a Clinical Tool for Diagnosing and Classifying Biological Tissues

机译:多峰纤维探针光谱作为诊断和分类生物组织的临床工具

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An optical fiber probe for multimodal spectroscopy was designed, developed and used for tissue diagnostics. The probe, based on a fiber bundle with optical fibers of various size and properties, allows performing spectroscopic measurements with different techniques, including fluorescence, Raman, and diffuse reflectance, using the same probe. Two visible laser diodes were used for fluorescence spectroscopy, a laser diode emitting in the NIR was used for Raman spectroscopy, and a fiber-coupled halogen lamp for diffuse reflectance. The developed probe was successfully employed for diagnostic purposes on various tissues, including brain and bladder. In particular, the device allowed discriminating healthy tissue from both tumor and dysplastic tissue as well as to perform tumor grading. The diagnostic capabilities of the method, determined using a cross-validation method with a leave-one-out approach, demonstrated high sensitivity and specificity for all the examined samples, as well as a good agreement with histopathological examination performed on the same samples. The obtained results demonstrated that the multimodal approach is crucial for improving diagnostic capabilities with respect to what can be obtained from individual techniques. The experimental setup presented here can improve diagnostic capabilities on a broad range of tissues and has the potential of being used clinically for guiding surgical resection in the near future.
机译:设计,开发,用于组织诊断,设计了一种用于多模式光谱的光纤探针。基于具有各种尺寸和性质的光纤的纤维束的探针允许使用相同的探针进行不同技术进行光谱测量,包括荧光,拉曼和漫反射率。两个可见激光二极管用于荧光光谱,在NIR中发出的激光二极管用于拉曼光谱,以及用于漫射反射的纤维耦合卤素灯。已发发的探针在各种组织上成功用于诊断目的,包括脑和膀胱。特别地,该装置允许判别来自肿瘤和发育功能亢进组织的健康组织以及进行肿瘤分级。使用具有休假方法的交叉验证方法确定方法的诊断能力,对所有检查样本的敏感性和特异性表现出了高灵敏度和特异性,以及对同一样品进行的组织病理学检查的良好一致性。所获得的结果表明,多式联运方法对于改善可以从各种技术获得的内容提高诊断能力至关重要。这里呈现的实验设置可以改善广泛组织的诊断能力,并且具有在不久的将来引导手术切除的临床上使用的潜力。

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