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The role of spatial and temporal information in biological motionperception

机译:时空信息在生物运动中的作用知觉

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摘要

Point-light biological motion stimuli provide spatio-temporal information about the structure of the human body in motion. Manipulation of the spatial structure of point-light stimuli reduces the ability of human observers to perceive biological motion. A recent study has reported that interference with the spatial structure of pointlight walkers also reduces the evoked eventrelated potentials over the occipitotemporal cortex, but that interference with the temporal structure of the stimuli evoked event-related potentials similar to normal biological motion stimuli. We systematically investigated the influence of spatial and temporal manipulation on 2 common discrimination tasks and compared it with predictions of a neurocomputational model previously proposed. This model first analyzes the spatial structure of the stimulus independently of the temporal information to derive body posture and subsequently analyzes the temporal sequence of body postures to derive movement direction. Similar to the model predictions, the psychophysical results show that human observers need only intact spatial configuration of the stimulus to discriminate the facing direction of a point-light walker. In contrast, movement direction discrimination needs a fully intact spatiotemporal pattern of the stimulus. Theactivation levels in the model predict the observed eventrelated potentials forthe spatial and temporal manipulations.
机译:点光生物运动刺激可提供有关人体运动结构的时空信息。点光刺激的空间结构的操纵降低了人类观察者感知生物运动的能力。最近的一项研究报道,对点状光步行者的空间结构的干扰还降低了枕颞皮层上诱发的事件相关电位,但是对刺激的时间结构的干扰类似于正常的生物运动刺激。我们系统地研究了时空操纵对2种常见歧视任务的影响,并将其与先前提出的神经计算模型的预测进行了比较。该模型首先独立于时间信息分析刺激的空间结构,以得出身体姿势,然后分析身体姿势的时间序列,以得出运动方向。与模型预测相似,心理物理结果表明,人类观察者仅需要完整的刺激空间配置即可区分点光源步行者的朝向。相反,运动方向的辨别需要刺激的完全完整的时空模式。的模型中的激活水平可预测观察到的事件相关电位时空操纵。

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