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朝向与远离:身体运动方向如何改变视觉皮层中身体和动作的表示。

Moving Toward versus Away from Another: How Body Motion Direction Changes the Representation of Bodies and Actions in the Visual Cortex.

机构信息

Institut des Sciences Cognitives-Marc Jeannerod, UMR5229, Centre National de la Recherche Scientifique (CNRS) & Université Claude Bernard Lyon 1, 69675 Bron, France.

出版信息

Cereb Cortex. 2021 Mar 31;31(5):2670-2685. doi: 10.1093/cercor/bhaa382.

Abstract

Representing multiple agents and their mutual relations is a prerequisite to understand social events such as interactions. Using functional magnetic resonance imaging on human adults, we show that visual areas dedicated to body form and body motion perception contribute to processing social events, by holding the representation of multiple moving bodies and encoding the spatial relations between them. In particular, seeing animations of human bodies facing and moving toward (vs. away from) each other increased neural activity in the body-selective cortex [extrastriate body area (EBA)] and posterior superior temporal sulcus (pSTS) for biological motion perception. In those areas, representation of body postures and movements, as well as of the overall scene, was more accurate for facing body (vs. nonfacing body) stimuli. Effective connectivity analysis with dynamic causal modeling revealed increased coupling between EBA and pSTS during perception of facing body stimuli. The perceptual enhancement of multiple-body scenes featuring cues of interaction (i.e., face-to-face positioning, spatial proximity, and approaching signals) was supported by the participants' better performance in a recognition task with facing body versus nonfacing body stimuli. Thus, visuospatial cues of interaction in multiple-person scenarios affect the perceptual representation of body and body motion and, by promoting functional integration, streamline the process from body perception to action representation.

摘要

表示多个主体及其相互关系是理解社会事件(如互动)的前提。我们使用功能性磁共振成像技术对成年人类进行研究,发现专门用于身体形态和身体运动感知的视觉区域有助于处理社会事件,其方式是保持对多个运动主体的表示,并对它们之间的空间关系进行编码。具体来说,看到人类身体相向(相对于相背)运动的动画会增加身体选择性皮层(EBA)和后上颞区(pSTS)的神经活动,这些区域对生物运动感知具有特异性。在这些区域中,对于面对身体(相对于非面对身体)刺激,身体姿势和运动的表示以及整个场景的表示更加准确。使用动态因果建模的有效连接分析表明,在感知面对身体刺激时,EBA 和 pSTS 之间的耦合增加。参与者在面对身体与非面对身体刺激的识别任务中表现更好,这表明具有交互线索(即面对面定位、空间接近和接近信号)的多人场景的多主体场景的感知增强。因此,多人场景中的视觉空间交互线索会影响身体和身体运动的感知表示,并且通过促进功能整合,简化从身体感知到动作表示的过程。

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