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Topographic and quantitative microanalysis of human central nervous system tissue using synchrotron radiation

机译:使用同步加速器辐射对人体中枢神经系统组织进行形貌和定量显微分析

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摘要

Synchrotron microbeam X-ray fluorescence (mu-SXRF) was applied for topographic and quantitative analysis of selected elements in human brain and spinal cord. The main goal of the study is a better understanding of the role of elements, mainly metals, in processes leading to degeneration and atrophy of nerve cells in cases of two neurodegenerative disorders, i.e. Parkinson's disease (PD) and amyotrophic lateral sclerosis (ALS). The samples were taken during the autopsy from patients deceased with PD, ALS, and from a patient who died due to non-neurological conditions. In measurements, a 5 x 2 mum(2) X-ray beam was applied for scanning the thin tissue slices. Two-dimensional maps of elemental distribution were compared with histopathological sections. The results obtained showed that the spatial distribution of selected elements precisely corresponds to the microscopic views of scanned area of tissue. Moreover, differences in accumulation of selected elements in nerve cell bodies and areas representing white matter between patients affected by PD, ALS and the control case were noticed. The present investigation showed that the mu-SXRF technique is suitable for elemental analysis at the single cell level in applications in neurological research. Copyright (C) 2004 John Wiley Sons, Ltd.
机译:同步加速器微束X射线荧光(mu-SXRF)用于对人脑和脊髓中所选元素进行地形和定量分析。这项研究的主要目的是更好地了解元素(主要是金属)在两种神经退行性疾病(即帕金森氏病(PD)和肌萎缩性侧索硬化(ALS))情况下导致神经细胞变性和萎缩的过程中的作用。在尸检期间,样本是从死于PD,ALS的患者以及因非神经系统疾病死亡的患者中获取的。在测量中,使用5 x 2 mum(2)X射线束扫描薄组织切片。将元素分布的二维图与组织病理学切片进行比较。获得的结果表明,所选元素的空间分布正好对应于组织扫描区域的显微图。而且,注意到受PD,ALS和对照的患者在神经细胞体和代表白质的区域中所选元素的积累差异。本研究表明,mu-SXRF技术适用于神经学研究中单细胞水平的元素分析。版权所有(C)2004 John Wiley Sons,Ltd.

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