MRC Cognition and Brain Sciences Unit Cambridge, UK.
Front Hum Neurosci. 2013 Nov 8;7:725. doi: 10.3389/fnhum.2013.00725. eCollection 2013.
Action-perception circuits containing neurons in the motor system have been proposed as the building blocks of higher cognition; accordingly, motor dysfunction should entail cognitive deficits. Autism spectrum conditions (ASC) are marked by motor impairments but the implications of such motor dysfunction for higher cognition remain unclear. We here used word reading and semantic judgment tasks to investigate action-related motor cognition and its corresponding fMRI brain activation in high-functioning adults with ASC. These participants exhibited hypoactivity of motor cortex in language processing relative to typically developing controls. Crucially, we also found a deficit in semantic processing of action-related words, which, intriguingly, significantly correlated with this underactivation of motor cortex to these items. Furthermore, the word-induced hypoactivity in the motor system also predicted the severity of ASC as expressed by the number of autistic symptoms measured by the Autism-Spectrum Quotient (Baron-Cohen etal., 2001). These significant correlations between word-induced activation of the motor system and a newly discovered semantic deficit in a condition known to be characterized by motor impairments, along with the correlation of such activation with general autistic traits, confirm critical predictions of causal theories linking cognitive and semantic deficits in ASC, in part, to dysfunctional action-perception circuits and resultant reduction of motor system activation.
包含运动系统神经元的动作感知回路被认为是高级认知的构建模块;因此,运动功能障碍应该导致认知缺陷。自闭症谱系障碍(ASC)的特点是运动障碍,但这种运动功能障碍对高级认知的影响尚不清楚。我们在这里使用单词阅读和语义判断任务来研究高功能 ASC 成人的与动作相关的运动认知及其对应的 fMRI 大脑激活。这些参与者在语言处理方面表现出运动皮层活动相对较低,与正常发育的对照组相比。至关重要的是,我们还发现了与动作相关的单词的语义处理缺陷,令人好奇的是,这种缺陷与这些项目的运动皮层的低激活显著相关。此外,运动系统的单词诱导活动不足也可以预测 ASC 的严重程度,这由自闭症症状数量(Baron-Cohen 等人,2001 年)来衡量。这些运动系统的单词诱导激活与在已知以运动障碍为特征的情况下新发现的语义缺陷之间的显著相关性,以及这种激活与一般自闭症特征的相关性,证实了将 ASC 中的认知和语义缺陷与功能失调的动作感知回路联系起来的因果理论的关键预测,部分归因于运动系统激活的减少。