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Visuo-motor coordination and internal models for object interception.

机译:视动协调和物体拦截的内部模型。

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Intercepting and avoiding collisions with moving objects are fundamental skills in daily life. Anticipatory behavior is required because of significant delays in transforming sensory information about target and body motion into a timed motor response. The ability to predict the kinematics and kinetics of interception or avoidance hundreds of milliseconds before the event may depend on several different sources of information and on different strategies of sensory-motor coordination. What are exactly the sources of spatio-temporal information and what are the control strategies remain controversial issues. Indeed, these topics have been the battlefield of contrasting views on how the brain interprets visual information to guide movement. Here we attempt a synthetic overview of the vast literature on interception. We discuss in detail the behavioral and neurophysiological aspects of interception of targets falling under gravity, as this topic has received special attention in recent years. We show that visual cues alone are insufficient to predict the time and place of interception or avoidance, and they need to be supplemented by prior knowledge (or internal models) about several features of the dynamic interaction with the moving object.
机译:拦截和避免与移动物体的碰撞是日常生活中的基本技能。由于在将有关目标和身体运动的感觉信息转换为定时的运动反应方面存在大量延迟,因此需要采取预期的行为。在事件发生前数百毫秒内预测拦截或躲避的运动学和动力学的能力可能取决于几种不同的信息来源以及不同的感觉运动协调策略。时空信息的确切来源和控制策略仍然是有争议的问题。的确,这些主题已经成为就大脑如何解释视觉信息来引导运动形成对比的观点的战场。在这里,我们尝试对拦截方面的大量文献进行综合概述。我们将详细讨论拦截重力作用下的目标的行为和神经生理方面,这是近年来受到特别关注的话题。我们显示,仅视觉提示不足以预测拦截或避免的时间和地点,并且需要与有关与移动物体进行动态交互的多个特征的先验知识(或内部模型)进行补充。

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