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自闭症谱系障碍儿童未受影响的兄弟姐妹对故意生物运动的神经加工:一项 fMRI 研究。

Neural processing of intentional biological motion in unaffected siblings of children with autism spectrum disorder: an fMRI study.

机构信息

Child Study Center, Yale University School of Medicine, 230 South Frontage Road, New Haven, CT 06519, United States.

出版信息

Brain Cogn. 2013 Dec;83(3):297-306. doi: 10.1016/j.bandc.2013.09.007. Epub 2013 Oct 12.

Abstract

Despite often showing behaviorally typical levels of social cognitive ability, unaffected siblings of children with autism spectrum disorder have been found to show similar functional and morphological deficits within brain regions associated with social processing. They have also been reported to show increased activation to biological motion in these same regions, such as the posterior superior temporal sulcus (pSTS), relative to both children with autism and control children. It has been suggested that this increased activation may represent a compensatory reorganization of these regions as a result of the highly heritable genetic influence of autism. However, the response patterns of unaffected siblings in the domain of action perception are unstudied, and the phenomenon of compensatory activation has not yet been replicated. The present study used functional magnetic resonance imaging to determine the neural responses to intentional biological actions in 22 siblings of children with autism and 22 matched controls. The presented actions were either congruent or incongruent with the actor's emotional cue. Prior studies reported that typically developing children and adults, but not children with autism, show increased activation to incongruent actions (relative to congruent), within the pSTS and dorsolateral prefrontal cortex. We report that unaffected siblings did not show a compensatory response, or a preference for incongruent over congruent trials, in any brain region. Moreover, interaction analyses revealed a sub-region of the pSTS in which control children showed an incongruency preference to a significantly greater degree than siblings, which suggests a localized deficit in siblings. A sample of children with autism also did not show differential activation in the pSTS, providing further evidence that it is an area of selective disruption in children with autism and siblings. While reduced activation to both conditions was unique to the autism sample, lack of differentiation to incongruent and congruent intentional actions was common to both children with ASD and unaffected siblings.

摘要

尽管自闭症谱系障碍儿童的未受影响的兄弟姐妹在行为上表现出典型的社会认知能力水平,但他们在与社会处理相关的大脑区域中表现出类似的功能和形态缺陷。据报道,与自闭症儿童和对照组儿童相比,他们在这些相同区域(如后上颞叶区(pSTS))对生物运动的激活增加。有人认为,这种增加的激活可能代表了这些区域的代偿性重组,这是由于自闭症的高度遗传性遗传影响。然而,未受影响的兄弟姐妹在动作感知领域的反应模式尚未得到研究,补偿激活现象尚未得到复制。本研究使用功能磁共振成像来确定 22 名自闭症儿童的兄弟姐妹和 22 名匹配对照者对有意生物动作的神经反应。呈现的动作要么与演员的情绪提示一致,要么不一致。先前的研究报告称,典型发育的儿童和成人(但不是自闭症儿童)在 pSTS 和背外侧前额叶皮层中表现出对不一致动作(相对于一致动作)的激活增加。我们报告说,未受影响的兄弟姐妹在任何大脑区域都没有表现出代偿反应,也没有表现出对不一致试验的偏好(相对于一致试验)。此外,交互分析显示 pSTS 的一个亚区,对照组儿童在该亚区对不一致性的偏好程度显著大于兄弟姐妹,这表明兄弟姐妹存在局部缺陷。自闭症儿童的样本也没有显示 pSTS 中激活的差异,进一步证明它是自闭症儿童和兄弟姐妹选择性破坏的区域。虽然对两种情况的激活减少是自闭症样本所特有的,但对不一致和一致的有意动作缺乏分化是自闭症儿童和未受影响的兄弟姐妹所共有的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fab7/3869032/44296d1686d2/nihms-532155-f0001.jpg

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