首页> 外文期刊>Behavioural Brain Research: An International Journal >Electrophysiological correlates of biological motion permanence in humans.
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Electrophysiological correlates of biological motion permanence in humans.

机译:人体生物运动永久性的电生理相关性。

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摘要

Spatiotemporal discontinuity of visual input is a common occurrence in daily life. For example, when a walking person disappears temporarily behind a wall, observers have a clear sense of his physical presence despite the absence of any visual information (movement permanence). To investigate the neural substrates of biological motion permanence, we recorded scalp EEG activity of sixteen subjects while they passively observed either biological or scrambled motion disappearing behind an occluder and reappearing. The moment of the occluder's appearance was either fixed or randomized. The statistical comparison between the biological and scrambled motion ERP waveforms revealed a modulation of activity in centro-parietal and right occipito-temporal regions during the occlusion phase when the biological motion disappearance was time-locked, possibly reflecting the recall of sensorimotor representations. These representations might allow the prediction of moving organisms in occlusion conditions. When the appearance of the occluder was unpredictable there was no difference between biological and scrambled motion either before or during occlusion, indicating that temporal prediction is relevant to the processing of biological motion permanence.
机译:视觉输入的时空不连续是日常生活中的常见现象。例如,当步行者暂时消失在墙后时,尽管没有任何视觉信息(运动永久性),观察者仍能清楚地看到其身体。为了研究生物运动持久性的神经基质,我们记录了十六名受试者的头皮脑电图活动,而他们被动地观察到生物运动或混乱运动在封堵器后消失并重新出现。封堵器出现的时间是固定的或随机的。生物学和扰动运动ERP波形之间的统计比较显示,在生物运动消失被定时锁定的闭塞阶段中,顶顶和右枕颞区域的活动有所调节,这可能反映了感觉运动表征的恢复。这些表示可能允许预测在阻塞条件下移动的生物。当封堵器的外观不可预测时,在闭塞之前或期间,生物运动和加扰运动之间没有差异,这表明时间预测与生物运动持久性的处理有关。

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