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An event-related potentials study of biological motion perception in humans.

机译:与事件有关的潜力对人类生物运动知觉的研究。

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摘要

In order to clarify the neural dynamics involved in the perception of biological motion, we recorded event-related potentials from 12 subjects. The subjects were shown biological motion or scrambled motion as a control stimulus. In the scrambled motion, each point had the same velocity vector as in the biological motion, but the initial starting positions were randomized. The perception of both biological and scrambled motion elicited negative peaks at around 200 (N200) and 240 ms (N240). Furthermore, both negative peaks were significantly larger in the biological motion condition than in the scrambled motion condition over the right occipitotemporal region. In light of previous human neuroimaging studies, we speculate that component N200 is generated near the extrastriate cortex area and N240 is generated from the superior temporal sulcus region.
机译:为了阐明涉及生物运动感知的神经动力学,我们记录了来自12位受试者的事件相关电位。受试者表现出生物运动或刺激运动作为对照刺激。在加扰运动中,每个点都具有与生物运动中相同的速度矢量,但是初始起始位置是随机的。对生物运动和混乱运动的感知均在200(N200)和240 ms(N240)处产生负峰值。此外,在右枕颞区,在生物运动条件下,两个负峰都比在扰动运动条件下大。根据以前的人类神经影像学研究,我们推测分量N200产生于上皮皮质区域附近,而N240产生于颞上沟区域。

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