Department of Psychiatry and Psychotherapy CCM, Charité-Universitätsmedizin Berlin, corporate member of Freie Universität Berlin, Humboldt-Universität Zu Berlin, and Berlin Institute of Health, Berlin, Germany.
Health and Medical University Potsdam, Potsdam, Germany.
J Neural Transm (Vienna). 2021 Jun;128(6):845-859. doi: 10.1007/s00702-021-02352-w. Epub 2021 May 18.
The level of functioning of individuals with autism spectrum disorder (ASD) varies widely. To better understand the neurobiological mechanism associated with high-functioning ASD, we studied the rare case of a female patient with an exceptional professional career in the highly competitive academic field of Mathematics. According to the Research Domain Criteria (RDoC) approach, which proposes to describe the basic dimensions of functioning by integrating different levels of information, we conducted four fMRI experiments targeting the (1) social processes domain (Theory of mind (ToM) and face matching), (2) positive valence domain (reward processing), and (3) cognitive domain (N-back). Patient's data were compared to data of 14 healthy controls (HC). Additionally, we assessed the subjective experience of our case during the experiments. The patient showed increased response times during face matching and achieved a higher total gain in the Reward task, whereas her performance in N-back and ToM was similar to HC. Her brain function differed mainly in the positive valence and cognitive domains. During reward processing, she showed reduced activity in a left-hemispheric frontal network and cortical midline structures but increased connectivity within this network. During the working memory task patients' brain activity and connectivity in left-hemispheric temporo-frontal regions were elevated. In the ToM task, activity in posterior cingulate cortex and temporo-parietal junction was reduced. We suggest that the high level of functioning in our patient is rather related to the effects in brain connectivity than to local cortical information processing and that subjective report provides a fruitful framework for interpretation.
自闭症谱系障碍(ASD)个体的功能水平差异很大。为了更好地理解与高功能 ASD 相关的神经生物学机制,我们研究了一位女性患者的罕见病例,她在竞争激烈的数学学术领域有着非凡的职业成就。根据提出通过整合不同层次的信息来描述功能基本维度的研究领域标准(RDoC)方法,我们进行了四项 fMRI 实验,针对(1)社会过程领域(心理理论(ToM)和面孔匹配)、(2)正价域(奖励处理)和(3)认知域(N-back)。患者的数据与 14 名健康对照(HC)的数据进行了比较。此外,我们还评估了我们病例在实验期间的主观体验。患者在面孔匹配过程中表现出反应时间延长,在奖励任务中获得了更高的总收益,而她在 N-back 和 ToM 中的表现与 HC 相似。她的大脑功能主要在正价和认知领域存在差异。在奖励处理过程中,她表现出左半球额网络和皮质中线结构活动减少,但该网络内的连接增加。在工作记忆任务中,患者左半球颞额区域的大脑活动和连接增加。在心理理论任务中,后扣带回皮质和颞顶联合区的活动减少。我们认为,我们患者的高水平功能与其脑连接的影响有关,而不是与局部皮质信息处理有关,主观报告为解释提供了一个富有成效的框架。