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自闭症谱系障碍患者社会情感信息处理相关分布式神经系统功能整合和分离减少。

Reduced functional integration and segregation of distributed neural systems underlying social and emotional information processing in autism spectrum disorders.

机构信息

Ahmanson-Lovelace Brain Mapping Center, University of California, Los Angeles, 660 Charles E Young Drive South, Los Angeles, CA 90095-7085, USA.

出版信息

Cereb Cortex. 2012 May;22(5):1025-37. doi: 10.1093/cercor/bhr171. Epub 2011 Jul 22.

Abstract

A growing body of evidence suggests that autism spectrum disorders (ASDs) are related to altered communication between brain regions. Here, we present findings showing that ASD is characterized by a pattern of reduced functional integration as well as reduced segregation of large-scale brain networks. Twenty-three children with ASD and 25 typically developing matched controls underwent functional magnetic resonance imaging while passively viewing emotional face expressions. We examined whole-brain functional connectivity of two brain structures previously implicated in emotional face processing in autism: the amygdala bilaterally and the right pars opercularis of the inferior frontal gyrus (rIFGpo). In the ASD group, we observed reduced functional integration (i.e., less long-range connectivity) between amygdala and secondary visual areas, as well as reduced segregation between amygdala and dorsolateral prefrontal cortex. For the rIFGpo seed, we observed reduced functional integration with parietal cortex and increased integration with right frontal cortex as well as right nucleus accumbens. Finally, we observed reduced segregation between rIFGpo and the ventromedial prefrontal cortex. We propose that a systems-level approach-whereby the integration and segregation of large-scale brain networks in ASD is examined in relation to typical development-may provide a more detailed characterization of the neural basis of ASD.

摘要

越来越多的证据表明,自闭症谱系障碍(ASD)与大脑区域之间的通讯改变有关。在这里,我们提出了发现表明,自闭症的特征是功能整合减少以及大脑网络的大规模分离减少。23 名自闭症儿童和 25 名典型发育匹配的对照组在被动观看情绪面孔表情时接受了功能磁共振成像。我们检查了两个以前在自闭症中涉及情绪面孔处理的大脑结构的全脑功能连接:双侧杏仁核和下额前回的右侧眶部(rIFGpo)。在 ASD 组中,我们观察到杏仁核与次要视觉区域之间的功能整合减少(即长程连接减少),以及杏仁核与背外侧前额叶皮层之间的分离减少。对于 rIFGpo 种子,我们观察到与顶叶皮层的功能整合减少,与右侧额叶皮层和右侧伏隔核的整合增加。最后,我们观察到 rIFGpo 与腹内侧前额叶皮层之间的分离减少。我们提出,一种系统水平的方法——其中自闭症中大脑网络的整合和分离与典型发育相关——可能为自闭症的神经基础提供更详细的描述。

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