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在外侧顶叶皮层中映射具有选择性和互补性的领域一般性高级认知功能:来自 fMRI 比较不同难度语义任务与视空间任务的证据,以及功能连接分析。

Mapping Domain-Selective and Counterpointed Domain-General Higher Cognitive Functions in the Lateral Parietal Cortex: Evidence from fMRI Comparisons of Difficulty-Varying Semantic Versus Visuo-Spatial Tasks, and Functional Connectivity Analyses.

机构信息

Neuroscience and Aphasia Research Unit (NARU), School of Psychological Sciences, University of Manchester, ManchesterM13 9PL, UK.

出版信息

Cereb Cortex. 2017 Aug 1;27(8):4199-4212. doi: 10.1093/cercor/bhx107.

DOI:10.1093/cercor/bhx107
PMID:28472382
Abstract

Numerous cognitive domains have been associated with the lateral parietal cortex, yet how these disparate functions are packed into this region remains unclear. Whilst areas within the dorsal and the ventral parietal cortex (DPC and VPC) show differential function, there is considerable disagreement as to what these functions might be. Studies focussed on individual domains have plotted out variations of function across the region. Direct cross-domain comparisons are rare yet, when they have been undertaken, at least some regions (particularly the intraparietal sulcus [IPS] and core angular gyrus [AG]) appear to have contrastive domain-general qualities. In order to pursue this parietal puzzle, this study utilized both functional and resting-state magnetic resonance imaging to investigate a potential unifying neurocomputational framework-in which both domain general as well as domain-selective regions arise from differential patterns of connectivity into subregions of the lateral parietal cortex. Specifically we found that, consistent with their contrastive patterns of functional connectivity, subregions of DPC (anterior IPS) and VPC (AG) exhibit counterpointed functions sensitive to task/item-difficulty irrespective of cognitive domain. We propose that these regions serve as top-down executively penetrated and automatic bottom-up domain-general buffers of active information, respectively. In contrast, other parietal and nonparietal regions are tuned toward specific domains.

摘要

许多认知领域都与外侧顶叶皮层有关,但这些不同的功能是如何集中在这个区域的仍然不清楚。虽然背侧和腹侧顶叶皮层(DPC 和 VPC)内的区域显示出不同的功能,但对于这些功能可能是什么,存在相当大的分歧。专注于单个领域的研究已经在整个区域绘制出了功能的变化。直接的跨领域比较很少,但当它们被进行时,至少一些区域(特别是顶内沟[IPS]和核心角回[AG])似乎具有对比性的领域通用特质。为了探索这个顶叶难题,本研究利用功能和静息状态磁共振成像来研究一个潜在的统一的神经计算框架——其中领域通用和领域选择性区域都源于外侧顶叶皮层的亚区的不同连接模式。具体来说,我们发现,与它们对比鲜明的功能连接模式一致,DPC(前 IPS)和 VPC(AG)的亚区表现出与任务/项目难度相关的对比功能,而与认知领域无关。我们提出,这些区域分别作为自上而下的执行穿透和自动的、基于信息的、领域通用的缓冲区。相比之下,其他顶叶和非顶叶区域则针对特定的领域进行调整。

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