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Development of a novel combined fluorescence and reflectance spectroscopy system for guiding high-grade glioma resections _ Confirmation of capability in lab experiments

机译:开发新型荧光和反射光谱系统,用于指导高级胶质瘤切除术_确认实验室实验中的能力

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Total resection of glioblastoma multiform (GBM), the most common and aggressive malignant brain tumor, is challenging among other things due to difficulty in intraoperative discrimination between normal and residual tumor cells. This project demonstrates the potential of a system based on a combination of autofluorescence and diffuse reflectance spectroscopy to be useful as an intraoperative guiding tool. In this context, a system based on 5 LEDs coupled to optical fibers was employed to deliver UV/visible light to the sample sequentially. Remitted light from the tissue; including diffuse reflected and fluorescence of endogenous and exogenous fluorophores, as well as its photobleaching product, is transmitted to one photodiode and four avalanche photodiodes. This instrument has been evaluated with very promising results by performing various tissue-equivalent phantom laboratory and clinical studies on skin lesions.
机译:胶质母细胞瘤的总切除多样性(GBM),最常见和侵蚀性恶性脑肿瘤,由于正常和残留的肿瘤细胞之间的术中辨别难以难以挑战。该项目证明了基于自发荧光和漫反射光谱的组合的系统的潜力,以可用作术中引导工具。在这种情况下,基于耦合到光纤的5个LED的系统用于顺序向样品递送UV /可见光。来自组织的凹陷;包括弥漫性反射和荧光的内源和外源荧光团,以及其光漂白产品,传递到一个光电二极管和四个雪崩光电二极管。通过对皮肤病变进行各种组织当量的幻影实验室和临床研究,已经通过非常有前途的结果进行了评估。

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