首页> 外文期刊>Cortex: A Journal Devoted to the Study of the Nervous System and Behavior >Response patterns in the developing social brain are organized by social and emotion features and disrupted in children diagnosed with autism spectrum disorder
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Response patterns in the developing social brain are organized by social and emotion features and disrupted in children diagnosed with autism spectrum disorder

机译:发展中社会大脑中的反应模式由社会和情感特征组织,并扰乱诊断患有自闭症谱系障碍的儿童

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Adults and children recruit a specific network of brain regions when engaged in "Theory of Mind" (ToM) reasoning. Recently, fMRI studies of adults have used multivariate analyses to provide a deeper characterization of responses in these regions. These analyses characterize representational distinctions within the social domain, rather than comparing responses across preferred (social) and non-preferred stimuli. Here, we conducted opportunistic multivariate analyses in two previously collected datasets (Experiment 1: n = 20 5-11 year old children and n = 37 adults; Experiment 2: n = 76 neurotypical and n = 29 5 -12 year old children diagnosed with Autism Spectrum Disorder (ASD)) in order to characterize the structure of representations in the developing social brain, and in order to discover if this structure is disrupted in ASD. Children listened to stories that described characters' mental states (Mental), non-mentalistic social information (Social), and causal events in the environment (Physical), while undergoing fMRI. We measured the extent to which neural responses in ToM brain regions were organized according to two ToM-relevant models: 1) a condition model, which reflected the experimenter-generated condition labels, and 2) a data-driven emotion model, which organized stimuli according to their emotion content. We additionally constructed two control models based on linguistic and narrative features of the stories. In both experiments, the two ToM-relevant models outperformed the control models. The fit of the condition model increased with age in neurotypical children. Moreover, the fit of the condition model to neural response patterns was reduced in the RTPJ in children diagnosed with ASD. These results provide a first glimpse into the conceptual structure of information in ToM brain regions in childhood, and suggest that there are real, stable features that predict responses in these regions in children. Multivariate analyses are a promising approach for sensitively measuring conceptual and neural developmental change and individual differences in ToM. (C) 2019 Elsevier Ltd. All rights reserved.
机译:成人和儿童在从事“心态理论”(TOM)推理时招募一个特定的大脑区域网络。最近,成年人的FMRI研究使用多元分析来提供这些区域中的反应的更深层次。这些分析表征社交领域内的代表性区别,而不是比较优先(社会)和非优选刺激的响应。在这里,我们在两个先前收集的数据集中进行了机会多变量分析(实验1:n = 20 5-11岁儿童和N = 37个成年人;实验2:n = 76神经典型和n = 29 5 -12岁儿童诊断出来自闭症谱系障碍(ASD))为了表征发展中社会大脑中的表现的结构,并且为了发现这种结构在ASD中断。儿童倾听了描述了人物的心理状态(精神),非心理学社会信息(社会)和环境(物理)的因果事件的故事,同时接受过FMRI。我们根据两个TOM相关模型来衡量汤姆脑区内部响应的程度:1)一个条件模型,其反映了实验生成的病情标签,以及2)一个组织刺激的数据驱动的情感模型根据他们的情绪内容。我们另外基于故事的语言和叙事特征构建了两个控制模型。在这两个实验中,两个TOM相关模型表现优于控制模型。病情模型的适应性随着神经型儿童的年龄而增加。此外,在诊断为ASD的儿童的RTPJ中降低了条件模型对神经反应模式的拟合。这些结果在童年时期汤姆大脑地区的信息概念结构中提供了第一次瞥见,并表明存在真实的,稳定的特征,可预测儿童这些地区的反应。多变量分析是一种有希望的方法,用于敏感地测量概念和神经发育变化和汤姆的个体差异。 (c)2019年elestvier有限公司保留所有权利。

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