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Neural Representations for Sensory-Motor Control I: Head-Centered 3-D Target Positions from Opponent Eye Commands

机译:感觉运动控制的神经表示I:来自对手眼部命令的头部居中的3D目标位置

摘要

This article describes how corollary discharges from outflow eye movement commands can be transformed by two stages of opponent neural processing into a head-centered representation of 3-D target position. This representation implicitly defines a cyclopean coordinate system whose variables approximate the binocular vergence and spherical horizontal and vertical angles with respect to the observer's head. Various psychophysical data concerning binocular distance perception and reaching behavior are clarified by this representation. The representation provides a foundation for learning head-centered and body-centered invariant representations of both foveated and non-foveated 3-D target positions. It also enables a solution to be developed of the classical motor equivalence problem, whereby many different joint configurations of a redundant manipulator can all be used to realize a desired trajectory in 3-D space.
机译:本文介绍了如何通过两个阶段的对手神经处理将来自流出眼球运动命令的推论放电转换为3D目标位置的头部中心表示。此表示形式隐式定义了一个单眼坐标系,其变量近似于双目散度以及相对于观察者头部的球面水平和垂直角度。通过这种表示可以澄清有关双眼距离感知和达到行为的各种心理物理学数据。该表示法为学习偏心和非偏心3D目标位置的以头为中心和以身体为中心的不变表示提供了基础。它还使经典电动机等效问题的解决方案得以开发,从而冗余操纵器的许多不同关节构造都可以全部用于实现3-D空间中的期望轨迹。

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