Neural responses to biological motion distinguish autistic and schizotypal traits.

IF 3.9 2区 医学 Q2 NEUROSCIENCES Social cognitive and affective neuroscience Pub Date : 2023-03-22 DOI:10.1093/scan/nsad011
Matthew Hudson, Severi Santavirta, Vesa Putkinen, Kerttu Seppälä, Lihua Sun, Tomi Karjalainen, Henry K Karlsson, Jussi Hirvonen, Lauri Nummenmaa
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Abstract

Difficulties in social interactions characterize both autism and schizophrenia and are correlated in the neurotypical population. It is unknown whether this represents a shared etiology or superficial phenotypic overlap. Both conditions exhibit atypical neural activity in response to the perception of social stimuli and decreased neural synchronization between individuals. This study investigated if neural activity and neural synchronization associated with biological motion perception are differentially associated with autistic and schizotypal traits in the neurotypical population. Participants viewed naturalistic social interactions while hemodynamic brain activity was measured with fMRI, which was modeled against a continuous measure of the extent of biological motion. General linear model analysis revealed that biological motion perception was associated with neural activity across the action observation network. However, intersubject phase synchronization analysis revealed neural activity to be synchronized between individuals in occipital and parietal areas but desynchronized in temporal and frontal regions. Autistic traits were associated with decreased neural activity (precuneus and middle cingulate gyrus), and schizotypal traits were associated with decreased neural synchronization (middle and inferior frontal gyri). Biological motion perception elicits divergent patterns of neural activity and synchronization, which dissociate autistic and schizotypal traits in the general population, suggesting that they originate from different neural mechanisms.

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神经对生物运动的反应可区分自闭症和精神分裂症。
社交互动障碍是自闭症和精神分裂症的共同特征,在神经畸形人群中也有相关性。目前还不清楚这究竟是共同的病因还是表面的表型重叠。自闭症和精神分裂症患者在感知社会刺激时都会表现出不典型的神经活动,个体间的神经同步性也会降低。本研究调查了在神经畸形人群中,与生物运动感知相关的神经活动和神经同步是否与自闭症和精神分裂症特质有不同的关联。参与者在观看自然的社会互动的同时,用 fMRI 测量大脑血流动力学活动,并将其与生物运动程度的连续测量值进行建模。一般线性模型分析表明,生物运动感知与整个动作观察网络的神经活动有关。然而,受试者间相位同步分析表明,神经活动在枕叶和顶叶区域是同步的,但在颞叶和额叶区域则是不同步的。自闭症特征与神经活动减少(楔前区和扣带回中部)有关,而精神分裂症特征与神经同步性减少(额叶中部和下部)有关。生物运动感知会引起不同的神经活动和同步模式,从而将普通人群中的自闭症和精神分裂症特质区分开来,这表明它们源自不同的神经机制。
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来源期刊
CiteScore
6.80
自引率
4.80%
发文量
62
审稿时长
4-8 weeks
期刊介绍: SCAN will consider research that uses neuroimaging (fMRI, MRI, PET, EEG, MEG), neuropsychological patient studies, animal lesion studies, single-cell recording, pharmacological perturbation, and transcranial magnetic stimulation. SCAN will also consider submissions that examine the mediational role of neural processes in linking social phenomena to physiological, neuroendocrine, immunological, developmental, and genetic processes. Additionally, SCAN will publish papers that address issues of mental and physical health as they relate to social and affective processes (e.g., autism, anxiety disorders, depression, stress, effects of child rearing) as long as cognitive neuroscience methods are used.
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