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Spatial constancy mechanisms in motor control

机译:电机控制中的空间恒定机制

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The success of the human species in interacting with the environment depends on the ability to maintain spatial stability despite the continuous changes in sensory and motor inputs owing to movements of eyes, head and body. In this paper, I will review recent advances in the understanding of how the brain deals with the dynamic flow of sensory and motor information in order to maintain spatial constancy of movement goals. The first part summarizes studies in the saccadic system, showing that spatial constancy is governed by a dynamic feed-forward process, by gaze-centred remapping of target representations in anticipation of and across eye movements. The subsequent sections relate to other oculomotor behaviour, such as eye–head gaze shifts, smooth pursuit and vergence eye movements, and their implications for feed-forward mechanisms for spatial constancy. Work that studied the geometric complexities in spatial constancy and saccadic guidance across head and body movements, distinguishing between self-generated and passively induced motion, indicates that both feed-forward and sensory feedback processing play a role in spatial updating of movement goals. The paper ends with a discussion of the behavioural mechanisms of spatial constancy for arm motor control and their physiological implications for the brain. Taken together, the emerging picture is that the brain computes an evolving representation of three-dimensional action space, whose internal metric is updated in a nonlinear way, by optimally integrating noisy and ambiguous afferent and efferent signals.
机译:尽管由于眼睛,头部和身体的运动而不断变化的感觉和运动输入,人类与环境相互作用的成功取决于维持空间稳定性的能力。在本文中,我将回顾在理解大脑如何处理感觉和运动信息的动态流以保持运动目标的空间恒定性方面的最新进展。第一部分总结了对扫视系统的研究,表明空间恒定性是由动态前馈过程控制的,通过预测和跨眼运动的目标表示的注视中心重映射。随后的部分涉及其他动眼行为,例如眼头注视移动,平稳的追踪和发散的眼球运动,以及它们对空间恒定的前馈机制的影响。研究跨越头部和身体运动的空间恒定性和跳动指导的几何复杂性,区分自身产生的运动和被动引起的运动的工作表明,前馈和感觉反馈处理都在运动目标的空间更新中发挥作用。本文最后讨论了用于手臂运动控制的空间恒定行为机制及其对大脑的生理影响。综上所述,新出现的图景是大脑通过最佳地整合有噪声和歧义的传入和传出信号,来计算三维动作空间的演化表示,该三维动作空间的内部度量以非线性方式更新。

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