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Cortical Dynamics of Visual Motion Perception: Short-Range and Long-Range Apparent Motion

机译:视觉运动知觉的皮质动力学:短程和长程视在运动

摘要

This article describes further evidence for a new neural network theory of biological motion perception. The theory clarifies why parallel streams Vl --> V2, Vl --> MT, and Vl --> V2 --> MT exist for static form and motion form processing among the areas Vl, V2, and MT of visual cortex. The theory suggests that the static form system (Static BCS) generates emergent boundary segmentations whose outputs are insensitive to direction-ofcontrast and insensitive to direction-of-motion, whereas the motion form system (Motion BCS) generates emergent boundary segmentations whose outputs are insensitive to directionof-contrast but sensitive to direction-of-motion. The theory is used to explain classical and recent data about short-range and long-range apparent motion percepts that have not yet been explained by alternative models. These data include beta motion; split motion; gamma motion and reverse-contrast gamma motion; delta motion; visual inertia; the transition from group motion to element motion in response to a Ternus display as the interstimulus interval (ISI) decreases; group motion in response to a reverse-contrast Ternus display even at short ISIs; speed-up of motion velocity as interflash distance increases or flash duration decreases; dependence of the transition from element motion to group motion on stimulus duration and size; various classical dependencies between flash duration, spatial separation, ISI, and motion threshold known as Korte's Laws; dependence of motion strength on stimulus orientation and spatial frequency; short-range and long-range form-color interactions; and binocular interactions of flashes to different eyes.
机译:本文介绍了有关生物运动感知的新神经网络理论的进一步证据。该理论阐明了为什么在视觉皮层的区域V1,V2和MT之间存在用于静态形式和运动形式处理的并行流V1→V2,V1→MT,以及V1→V2→MT。理论表明,静态形式系统(Static BCS)生成紧急边界分割,其输出对对比度不敏感,对运动方向不敏感;而运动形式系统(Motion BCS)生成紧急边界分割,其输出不敏感对对比的方向,但对运动的方向敏感。该理论用于解释关于短期和长期视运动感知的经典数据和最新数据,而替代模型尚未对此进行解释。这些数据包括beta运动;分割运动伽玛运动和反差伽玛运动;三角运动视觉惯性随着激励间隔(ISI)的减小,响应于Ternus显示,从组运动过渡到元素运动;即使在较短的ISI时,也可以根据反对比度的Ternus显示进行群组运动;随着闪光灯间距离增加或闪光灯持续时间减少,运动速度加快;从元素运动到小组运动的过渡依赖于刺激的持续时间和大小;闪光持续时间,空间间隔,ISI和运动阈值之间的各种经典依存关系,称为科特定律;运动强度对刺激取向和空间频率的依赖性;短程和长程形式-颜色相互作用;和闪烁到不同眼睛的双眼相互作用。

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