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Perception of biological motion from limited-lifetime stimuli

机译:有限寿命刺激对生物运动的感知

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The visual perception of human movement from sparse point-light walkers is often believed to rely on local motion analysis. We investigated the role of local motion in the perception of human walking, viewed from the side, in different tasks. The motion signal was manipulated by varying point lifetime. We found the task of coherence discrimination, commonly used in biological motion studies, to be inappropriate for testing the role of motion. A task requiring temporal information showed a strong performance drop when fewer points were used or when the image sequence was sampled and displayed at a reduced frame rate. Irrespective of the frame rate, performance did not vary with point lifetime. We concluded that local motion is not required for the perception of tested biological movements, suggesting that the analysis of biological motion does not benefit from examining local motion. The reliance of perception on the number of displayed points and frames supports the idea that biological motion is perceived from a sequence of spatiotemporally sampled forms.
机译:人们通常认为稀疏的点光步行者对人的运动的视觉感知依赖于局部运动分析。我们从侧面观察了在不同任务中局部运动在感知人类行走过程中的作用。通过改变点的寿命来控制运动信号。我们发现,通常在生物运动研究中使用的相干鉴别任务不适用于测试运动的作用。当使用较少的点或以降低的帧速率对图像序列进行采样和显示时,需要时间信息的任务就会表现出明显的性能下降。无论帧速率如何,性能都不会随点寿命而变化。我们得出的结论是,经测验的生物运动不需要局部运动,这表明对生物运动的分析不会从检查局部运动中受益。感知依赖于显示的点和帧的数量,支持了从一系列时空采样形式感知生物运动的想法。

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