首页> 外文期刊>European Journal of Nuclear Medicine and Molecular Imaging >Metabolic connectivity by interregional correlation analysis using statistical parametric mapping (SPM) and FDG brain PET; methodological development and patterns of metabolic connectivity in adults.
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Metabolic connectivity by interregional correlation analysis using statistical parametric mapping (SPM) and FDG brain PET; methodological development and patterns of metabolic connectivity in adults.

机译:通过使用统计参数映射(SPM)和FDG脑部PET的区域间相关分析进行代谢连通性;成年人代谢连接的方法学发展和模式。

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PURPOSE: Regionally connected areas of the resting brain can be detected by fluorodeoxyglucose-positron emission tomography (FDG-PET). Voxel-wise metabolic connectivity was examined, and normative data were established by performing interregional correlation analysis on statistical parametric mapping of FDG-PET data. MATERIALS AND METHODS: Characteristics of seed volumes of interest (VOIs) as functional brain units were represented by their locations, sizes, and the independent methods of their determination. Seed brain areas were identified as population-based gyral VOIs (n = 70) or as population-based cytoarchitectonic Brodmann areas (BA; n = 28). FDG uptakes in these areas were used as independent variables in a general linear model to search for voxels correlated with average seed VOI counts. Positive correlations were searched in entire brain areas. RESULTS: In normal adults, one third of gyral VOIs yielded correlations that were confined to themselves, but in the others, correlated voxels extended to adjacent areas and/or contralateral homologous regions. In tens of these latter areas with extensive connectivity, correlated voxels were found across midline, and asymmetry was observed in the patterns of connectivity of left and right homologous seed VOIs. Most of the available BAs yielded correlations reaching contralateral homologous regions and/or neighboring areas. Extents of metabolic connectivity were not found to be related to seed VOI size or to the methods used to define seed VOIs. CONCLUSIONS: These findings indicate that patterns of metabolic connectivity of functional brain units depend on their regional locations. We propose that interregional correlation analysis of FDG-PET data offers a means of examining voxel-wise regional metabolic connectivity of the resting human brain.
机译:目的:可以通过氟脱氧葡萄糖-正电子发射断层扫描(FDG-PET)检测静息区域的大脑连接区域。检查体素方式的代谢连通性,并通过对FDG-PET数据的统计参数映射执行区域间相关分析来建立规范数据。材料与方法:感兴趣的种子体积(VOI)作为功能性大脑单位的特征由其位置,大小及其确定的独立方法表示。种子脑区域被确定为基于群体的回旋VOI(n = 70)或基于群体的细胞结构Brodmann区域(BA; n = 28)。在一般线性模型中,将这些区域中的FDG吸收用作自变量,以搜索与平均种子VOI计数相关的体素。在整个大脑区域搜索正相关。结果:在正常成年人中,三分之一的陀螺VOI产生的相关性仅限于自己,而在其他成年人中,相关的体素扩展到相邻区域和/或对侧同源区域。在后面这些区域中的数十个具有广泛连通性的区域中,跨中线发现了相关体素,并且在左右同源种子VOI的连通性模式中观察到了不对称性。大多数可用的BA产生了到达对侧同源区域和/或邻近区域的相关性。未发现代谢连通性的程度与种子VOI大小或用于定义种子VOI的方法有关。结论:这些发现表明功能性大脑单位的代谢连通性模式取决于其区域位置。我们建议,FDG-PET数据的区域间相关性分析提供了一种检查静息人脑的体素方向区域代谢连通性的方法。

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