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开环条件下平稳跟踪眼球运动时目标运动的感知:视网膜和视网膜外信号的特征

The perception of target motion during smooth pursuit eye movements in the open-loop condition: characteristics of retinal and extraretinal signals.

作者信息

Pola J, Wyatt H J

机构信息

Schnurmacher Institute for Vision Research, State University of New York, State College of Optometry, NY 10010.

出版信息

Vision Res. 1989;29(4):471-83. doi: 10.1016/0042-6989(89)90010-2.

Abstract

During smooth pursuit eye movement, the perception of target motion appears to come from retinal and extraretinal influences. To explore this, two open-loop conditions (experimental stimuli stabilized at the retina) were used: one to look at the combined effect of retinal and extraretinal signals on perception (using sinusoidal target motion); and the other to look at the characteristics of an extraretinal signal alone (using a complex target and square-wave motion). In both conditions subjects tracked target motion in the dark, and subsequently compared it to motion of a similar target in the light. The main findings of the study are that the magnitude of the extraretinal signal decreases with frequency, and that the retinal and extraretinal signals combine additively. This system appears to involve a transport-time, which could be in the form of a time advance. These features of perception have a variety of implications for motor control.

摘要

在平稳跟踪眼球运动过程中,目标运动的感知似乎来自视网膜和视网膜外的影响。为了探究这一点,使用了两种开环条件(实验刺激稳定在视网膜上):一种是观察视网膜和视网膜外信号对感知的综合影响(使用正弦目标运动);另一种是单独观察视网膜外信号的特征(使用复杂目标和方波运动)。在这两种条件下,受试者在黑暗中跟踪目标运动,随后将其与在明亮环境中类似目标的运动进行比较。该研究的主要发现是,视网膜外信号的幅度随频率降低,并且视网膜和视网膜外信号以相加的方式组合。该系统似乎涉及一个传输时间,其形式可能是时间提前。这些感知特征对运动控制有多种影响。

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