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基于生物运动的视觉意识与注意力的关系:一项脑电图研究。

The Relationship between Biological Motion-Based Visual Consciousness and Attention: An Electroencephalograph Study.

机构信息

School of Psychology, Shanghai University of Sport, Shanghai, China.

School of Psychology, Shanghai University of Sport, Shanghai, China; Key Lab of Cognitive Evaluation and Regulation in Sport, General Administration of Sport of China, Shanghai, China.

出版信息

Neuroscience. 2019 Sep 1;415:230-240. doi: 10.1016/j.neuroscience.2019.06.040. Epub 2019 Jul 10.

Abstract

Understanding and predicting the intentions of others through limb movements are vital to social interaction. The processing of biological motion is unique from the processing of motion of inanimate objects. Presently, there is controversy over whether visual consciousness of biological motion is regulated by visual attention. In addition, the neural mechanisms involved in biological motion-related visual awareness are not known. In the current study, the relationship between visual awareness (aware vs unaware), represented by a point-light walker and biological-motion-based attention, manipulated by a difference in congruence (congruent, incongruent) between the direction of a pre-cue and that of biological motion was explored. The neural mechanisms involved in processing the stimuli were explored through electroencephalography. Both early (50-150 ms, 100-200 ms, and 174-226 ms after target presentation) and late (350-550 ms after target presentation) awareness-related neural processings were observed during a biological motion-based congruency task. Early processing was localized to occipital-parietal regions, such as the left postcentral gyrus, the left middle occipital gyrus, and the right precentral gyrus. In the 174-226-ms window, the activity in the occipital region was gradually replaced by activity in the parietal and frontal regions. Late processing was localized to frontal-parietal regions, such as the right dorsal superior frontal gyrus, the left medial superior frontal gyrus, and the occipito-temporal regions. Congruency-related processing occurred in the 246-260-ms window and was localized to the right superior occipital gyrus. In summary, due to its complexity, biological motion awareness has a unique neural basis.

摘要

理解和预测他人的意图是社会互动的关键。与无生命物体的运动相比,生物运动的处理是独特的。目前,关于视觉意识对生物运动的调节是否受视觉注意的影响存在争议。此外,涉及生物运动相关视觉意识的神经机制尚不清楚。在当前的研究中,通过预提示方向与生物运动方向之间的一致性(一致、不一致)差异来操纵生物运动为基础的注意,探索了代表点光源步行者的视觉意识(意识与无意识)与生物运动为基础的注意之间的关系。通过脑电图探索了处理刺激的神经机制。在基于生物运动的一致性任务中,观察到了早期(目标呈现后 50-150ms、100-200ms 和 174-226ms)和晚期(目标呈现后 350-550ms)与意识相关的神经加工。早期加工定位于枕顶区域,如左中央后回、左中枕叶和右中央前回。在 174-226ms 窗口中,枕区的活动逐渐被顶区和额区的活动所取代。晚期加工定位于额顶区域,如右背侧额上回、左内侧额上回和枕颞区。在 246-260ms 窗口中发生了一致性相关的加工,定位于右顶枕上回。总之,由于其复杂性,生物运动意识具有独特的神经基础。

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