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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Optimal control of natural eye-head movements minimizes the impact of noise.
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Optimal control of natural eye-head movements minimizes the impact of noise.

机译:最佳控制自然的头部运动可以最大程度地减少噪音的影响。

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摘要

When shifting gaze to foveate a new target, humans mostly choose a unique set of eye and head movements from an infinite number of possible combinations. This stereotypy suggests that a general principle governs the movement choice. Here, we show that minimizing the impact of uncertainty, i.e., noise affecting motor performance, can account for the choice of combined eye-head movements. This optimization criterion predicts all major features of natural eye-head movements-including the part where gaze is already on target and the eye counter-rotates-such as movement durations, relative eye-head contributions, velocity profiles, and the dependency of gaze shifts on initial eye position. As a critical test of this principle, we show that it also correctly predicts changes in eye and head movement imposed by an experimental increase in the head moment of inertia. This suggests that minimizing the impact of noise is a simple and powerful principle that explains the choice of a unique set of movement profiles and segment coordination in goal-directed action.
机译:当转移视线以偏向新目标时,人类通常会从无数种可能的组合中选择一套独特的眼球和头部运动。这种陈规定型观念表明,一般原则支配着机芯的选择。在这里,我们表明将不确定性的影响(即噪声对电机性能的影响)最小化可以说明组合的眼部头部运动的选择。此优化标准可预测自然的头部运动的所有主要特征,包括已经注视目标并且眼睛反向旋转的部分,例如运动持续时间,相对的头部响应,速度分布以及视线移动的依赖性在最初的眼睛位置。作为对此原理的关键测试,我们证明它还可以正确预测由头部惯性矩的实验性增加而引起的眼睛和头部运动的变化。这表明,将噪声的影响降至最低是一项简单而有力的原则,它解释了在目标定向动作中选择一组独特的运动曲线和分段协调的情况。

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