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动态功能连接模式的改变是自闭症成年人社交情感互惠表达减少的基础。

Altered Patterns of Dynamic Functional Connectivity Underpin Reduced Expressions of Social-Emotional Reciprocity in Autistic Adults.

作者信息

Czekóová Kristína, Mareček Radek, Staněk Rostislav, Hartley Calum, Kessler Klaus, Hlavatá Pavlína, Ošlejšková Hana, Brázdil Milan, Shaw Daniel Joel

机构信息

Behavioural and Social Neuroscience Research Group, Central European Institute of Technology (CEITEC), Masaryk University, Brno, Czechia.

Institute of Psychology, Czech Academy of Sciences, Brno, Czechia.

出版信息

Autism Res. 2025 Apr;18(4):725-740. doi: 10.1002/aur.70010. Epub 2025 Feb 24.

Abstract

To identify the neurocognitive mechanisms underpinning the social difficulties that characterize autism, we performed functional magnetic resonance imaging on pairs of autistic and non-autistic adults simultaneously whilst they interacted with one another on the iterated Ultimatum Game (iUG)-an interactive task that emulates the reciprocal characteristic of naturalistic interpersonal exchanges. Two age-matched sets of male-male dyads were investigated: 16 comprised an autistic Responder and a non-autistic Proposer, and 19 comprised non-autistic pairs of Responder and Proposer. Players' round-by-round behavior on the iUG was modeled as reciprocal choices, and dynamic functional connectivity (dFC) was measured to identify the neural mechanisms underpinning reciprocal behaviors. Behavioral expressions of reciprocity were significantly reduced in autistic compared with non-autistic Responders, yet no such differences were observed between the non-autistic Proposers in either set of dyads. Furthermore, we identified latent dFC states with temporal properties associated with reciprocity. Autistic interactants spent less time in brain states characterized by dynamic inter-network integration and segregation among the Default Mode Network and cognitive control networks, suggesting that their reduced expressions of social-emotional reciprocity reflect less efficient reconfigurations among brain networks supporting flexible cognition and behavior. These findings advance our mechanistic understanding of the social difficulties characterizing autism.

摘要

为了确定导致自闭症典型社交困难的神经认知机制,我们对成对的自闭症和非自闭症成年人进行了功能磁共振成像,同时他们在重复最后通牒博弈(iUG)中相互互动——这是一项模拟自然人际交流互惠特征的互动任务。我们研究了两组年龄匹配的男性二元组:16组由一名自闭症回应者和一名非自闭症提议者组成,19组由非自闭症的回应者和提议者对组成。iUG中玩家的逐轮行为被建模为互惠选择,并测量动态功能连接(dFC)以确定支撑互惠行为的神经机制。与非自闭症回应者相比,自闭症回应者的互惠行为表达明显减少,但在两组二元组的非自闭症提议者之间未观察到此类差异。此外,我们确定了具有与互惠相关的时间属性的潜在dFC状态。自闭症互动者处于以默认模式网络和认知控制网络之间的动态网络间整合和分离为特征的大脑状态的时间较少,这表明他们社交情感互惠表达的减少反映了支持灵活认知和行为的大脑网络之间效率较低的重新配置。这些发现推进了我们对自闭症典型社交困难的机制性理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab14/12015814/984b527daad1/AUR-18-725-g004.jpg

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