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Aberrant Functional Connectivity and Structural Atrophy in Subcortical Vascular Cognitive Impairment: Relationship with Cognitive Impairments

机译:皮层下血管认知障碍的异常功能连接性和结构性萎缩:与认知障碍的关系

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摘要

Abnormal structures in the cortical and subcortical regions have been identified in subcortical vascular cognition impairment (SVCI). However, little is known about the functional alterations in SVCI, and no study refers to the functional connectivity in the prefrontal and subcortical regions in this context. The medial prefrontal cortex (MPFC) is an important region of the executive network and default mode network, and the subcortical thalamus plays vital roles in mediating or modulating these two networks. To investigate both thalamus- and MPFC-related functional connectivity as well as its relationship with cognition in SVCI, 32 SVCI patients and 23 control individuals were administered neuropsychological assessments. They also underwent structural and functional magnetic resonance imaging scans. Voxel-based morphometry and functional connectivity analysis were performed to detect gray matter (GM) atrophy and to characterize the functional alterations in the thalamus and the MPFC. For structural data, we observed that GM atrophy was distributed in both cortical regions and subcortical areas. For functional data, we observed that the thalamus functional connectivity in SVCI was significantly decreased in several cortical regions [i.e., the orbitofrontal lobe (OFL)], which are mainly involved in executive function and memory function. However, connectivity was increased in several frontal regions (i.e., the inferior frontal gyrus), which may be induced by the compensatory recruitment of the decreased functional connectivity. The MPFC functional connectivity was also decreased in executive- and memory-related regions (i.e., the anterior cingulate cortex) along with a motor region (i.e., the supplementary motor area). In addition, the cognitive performance was closely correlated with functional connectivity between the left thalamus and the left OFL in SVCI. The present study, thus, provides evidence for an association between structural and functional alterations, and sheds light on the underlying neural mechanisms of executive dysfunction in SVCI.
机译:在皮层下血管认知障碍(SVCI)中已经确定了皮层和皮层下区域的异常结构。但是,关于SVCI中的功能改变知之甚少,在这种情况下,没有研究涉及前额叶和皮层下区域的功能连接。内侧前额叶皮层(MPFC)是执行网络和默认模式网络的重要区域,而皮质下丘脑在介导或调节这两个网络中起着至关重要的作用。为了研究丘脑和MPFC相关的功能连通性及其与SVCI中认知的关系,对32例SVCI患者和23名对照个体进行了神经心理学评估。他们还进行了结构和功能磁共振成像扫描。进行基于体素的形态计量学和功能连接性分析,以检测灰质(GM)萎缩并表征丘脑和MPFC中的功能改变。对于结构数据,我们观察到GM萎缩分布在皮质区域和皮质下区域。对于功能数据,我们观察到SVCI中的丘脑功能连通性在几个皮质区域[即眶额叶(OFL)]中显着降低,这些区域主要涉及执行功能和记忆功能。但是,在几个额叶区域(即额额下回)的连接性增加了,这可能是由于功能性连接性下降的补偿性征募引起的。在执行和与记忆有关的区域(即前扣带回皮层)以及运动区域(即运动辅助区)中,MPFC的功能连通性也降低了。此外,在SVCI中,认知能力与左丘脑和左OFL之间的功能连接密切相关。因此,本研究为结构性和功能性改变之间的关联提供了证据,并阐明了SVCI执行功能障碍的潜在神经机制。

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