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在跟踪正弦运动目标时手臂与眼睛运动的协调

Coordination of arm and eye movements in tracking of sinusoidally moving targets.

作者信息

Bock O

出版信息

Behav Brain Res. 1987 May;24(2):93-100. doi: 10.1016/0166-4328(87)90247-6.

Abstract

Human subjects tracked sinusoidally moving visual targets with arm and eyes, in absence of visual feedback of the arm. The resulting frequency responses indicated that predictive mechanisms are involved both in arm and in eye tracking, and that the respective upper frequency limits are similar. Most importantly, substantial differences between arm and eye performance were observed: At low frequencies the gain of arm, but not of eye movement was consistently smaller than 0 dB. At higher frequencies arm, but not eye gain exhibited a marked amplitude non-linearity. The intra-trial gain and phase variability of arm movement was not correlated with the respective variability of eye movement. The reaction times to sudden changes of target parameters could be considerably different for arm and eye, and their inter-trial variability was not, or only marginally, correlated. Taken together, these findings strongly suggest that the mechanisms controlling predictive arm and eye movements in our experiment are organized to a major part in independent, parallel channels. The results are discussed with reference to a simple scheme of eye-arm coordination.

摘要

在没有手臂视觉反馈的情况下,人类受试者用手臂和眼睛追踪正弦运动的视觉目标。由此产生的频率响应表明,预测机制参与了手臂和眼睛的追踪,并且各自的高频极限相似。最重要的是,观察到手臂和眼睛表现之间存在显著差异:在低频时,手臂的增益始终小于0 dB,而眼睛运动的增益则不然。在较高频率时,手臂的增益表现出明显的幅度非线性,而眼睛的增益则没有。手臂运动的试验内增益和相位变异性与眼睛运动的相应变异性不相关。手臂和眼睛对目标参数突然变化的反应时间可能有很大差异,并且它们的试验间变异性不相关或仅略有相关。综上所述,这些发现强烈表明,在我们的实验中,控制预测性手臂和眼睛运动的机制在很大程度上是在独立的平行通道中组织起来的。我们参照一个简单的眼-臂协调方案对结果进行了讨论。

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