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Optical properties spectral and lifetime measurements of central nervous system tumors in humans

机译:人体中枢神经系统肿瘤的光学性质光谱和寿命测量

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摘要

A key challenge of central nervous system tumor surgery is to discriminate between brain regions infiltrated by tumor cells and surrounding healthy tissue. Although monitoring of autofluorescence could potentially be an efficient way to provide reliable information for these regions, we found little information on this subject, and thus we conducted studies of brain tissue optical properties. This particular study focuses on the different optical quantitative responses of human central nervous system tumors and their corresponding controls. Measurements were performed on different fixed human tumoral and healthy brain samples. Four groups of central nervous system tumors (glioblastoma, diffuse glioma, meningioma and metastasis) were discriminated from healthy brain and meninx control tissues. A threshold value was found for the scattering and absorption coefficient between tumoral and healthy groups. Emission Spectra of healthy tissue had a significant higher intensity than tumoral groups. The redox and optical index ratio were thenn calculated and these also showed significant discrimination. Two fluorescent molecules, NADH and porphyrins, showed distinct lifetim values among the different groups of samples. This study defines several optical indexes that can act as combinated indicators to discriminate healthy from tumoral tissues.
机译:中枢神经系统肿瘤手术的关键挑战是区分被肿瘤细胞浸润的大脑区域和周围健康组织。尽管对自发荧光的监测可能是为这些区域提供可靠信息的有效方法,但我们在该主题上发现的信息很少,因此我们进行了脑组织光学特性的研究。这项特殊的研究集中于人类中枢神经系统肿瘤及其相应对照的不同光学定量反应。对不同的固定人类肿瘤和健康大脑样本进行了测量。从健康的大脑和脑膜控制组织中区分出四组中枢神经系统肿瘤(胶质母细胞瘤,弥漫性神经胶质瘤,脑膜瘤和转移瘤)。发现肿瘤和健康组之间的散射和吸收系数的阈值。健康组织的发射光谱的强度明显高于肿瘤组。然后计算了氧化还原和光学指数比,它们也显示出明显的区别。两种荧光分子,NADH和卟啉,在不同样品组之间显示出不同的生命值。这项研究定义了几种光学指标,这些指标可以用作区分肿瘤组织健康的综合指标。

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