功能激活研究的观察者独立荟萃分析揭示了人类顶叶皮层的功能簇。

Janpeter Nickel, Rüdiger J Seitz
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引用次数: 38

摘要

人类顶叶皮层是一个高度分化的结构,由细胞结构定义的亚区组成,这些亚区与其他皮层和皮层下区域特异性连接。根据亚人类灵长类动物神经生理学研究的证据,这些子区域应该在功能上高度专业化。在此,我们回顾了51个不同的健康受试者在统计参数图中顶叶激活的神经影像学研究。对激活区域重心的立体定向坐标进行聚类分析,并将其绘制到Talairach空间中,结果表明,在不同实验室和功能成像模式下,相似范式的平均激活焦点具有高度一致性。我们的meta分析揭示了每个半球顶叶皮层的7对完全对称分布的不同亚区,以及三个不配对的区域,这些区域在自我中心和非中心坐标的肢体和眼球运动的产生中起着关键作用,同时也在注意力、记忆和认知问题的解决中起着关键作用。这些数据突出了人类顶叶的模块化组织。通过局部分布的分布式电路,它协调了专门的认知子功能,将感知和行动连接起来。我们的荟萃分析为理解人类顶叶皮层的信息处理提供了一个新的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional clusters in the human parietal cortex as revealed by an observer-independent meta-analysis of functional activation studies.

The human parietal cortex is a highly differentiated structure consisting of cytoarchitectonically defined subareas that are specifically connected with other cortical and subcortical areas. Based on evidence from neurophysiological studies in subhuman primates these subareas are supposed to be functionally highly specialized. Here, we reviewed 51 different neuroimaging studies on healthy subjects with activation of the parietal lobe in statistical parametric maps. Running a cluster analysis on the stereotactic coordinates of the centers of gravity of the activation areas and plotting them into Talairach space showed a high consistency of the mean activation foci for similar paradigms across different laboratories and functional imaging modalities. Our meta-analysis exposed seven distinct pairs of quite symmetrically distributed subareas of the parietal cortex of each hemisphere as well as three unpaired regions that are critically involved in the generation of limb and eye movements in egocentric and allocentric coordinates, but also in attention, memory and cognitive problem solving. These data highlights the modular organization of the human parietal lobe. By its locally interspersed distributed circuits it orchestrates specialized cognitive subfunctions interfacing perception and action. Our meta-analysis provides a new framework for understanding information processing in the human parietal cortex.

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