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人类平稳跟踪眼球运动的预测机制。

The mechanism of prediction in human smooth pursuit eye movements.

作者信息

Barnes G R, Asselman P T

机构信息

MRC Human Movement and Balance Unit, National Hospital, London.

出版信息

J Physiol. 1991 Aug;439:439-61. doi: 10.1113/jphysiol.1991.sp018675.

Abstract
  1. Experiments have been conducted on human subjects to determine the role of prediction in smooth eye movement control. Subjects were required to actively pursue a small target or stare passively at a larger display as it moved in the horizontal plane. 2. Target motion was basically periodic, but, after a random number of cycles an unexpected change was made in the amplitude, direction or frequency of target motion. Initially, the periodic stimulus took the form of a square waveform. In subsequent experiments, a triangular or sawtooth waveform was used, but in order to examine the timing of the response in relation to stimulus appearance, the target was tachistoscopically illuminated for 40-320 ms at the time that it passed through the mid-line position. 3. When subjects either actively pursued the target or stared passively at the larger display a characteristic pattern of steady-state eye movement was evoked composed of two phases, an initial build-up of eye velocity that reached a peak after 200 ms, followed by a decay phase with a time constant of 0.5-2 s. The build-up phase was initiated prior to target displacement for square-wave motion and before onset of target illumination for other waveforms. 4. The peak eye velocity evoked gradually increased over the first two to four cycles of repeated stimulation. Simultaneously, the response became more phase advanced, the reaction time between stimulus onset and the time at which peak velocity occurred decreasing from an average of 300 to 200 ms for triangular waveform stimuli. 5. When there was a sudden and unexpected change in amplitude and direction of the stimulus waveform, the eye movement induced had a peak velocity and direction that was inappropriate for the current visual stimulus, but which was highly correlated with the features of the preceding sequence in the stimulus. 6. When there was a sudden change in the frequency of the stimulus waveform the predictive eye movement was induced with a timing appropriate to the periodicity of the previous sequence but inappropriate to the new sequence. 7. The results indicate that prediction is carried out through the storage of information about both the magnitude and timing of eye velocity. The trajectory of the averaged eye velocity response was similar in form irrespective of the duration of target exposure or basic stimulus frequency, suggesting that the predictive estimate is released as a stereotyped volley of constant duration but varying magnitude under the control of a periodicity estimator.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 已对人类受试者进行实验,以确定预测在平稳眼球运动控制中的作用。受试者被要求在一个小目标在水平面上移动时积极追踪它,或者被动地盯着一个更大的显示屏。2. 目标运动基本呈周期性,但在随机数量的周期后,目标运动的幅度、方向或频率会发生意外变化。最初,周期性刺激采用方波形式。在后续实验中,使用了三角波或锯齿波,但为了检查与刺激出现相关的反应时间,目标在经过中线位置时通过速示器照明40 - 320毫秒。3. 当受试者积极追踪目标或被动盯着更大的显示屏时,会诱发一种由两个阶段组成的稳态眼球运动特征模式,一个是眼球速度的初始增加阶段,在200毫秒后达到峰值,随后是一个时间常数为0.5 - 2秒的衰减阶段。对于方波运动,增加阶段在目标位移之前开始;对于其他波形,在目标照明开始之前开始。4. 在重复刺激的前两到四个周期中,诱发的眼球速度峰值逐渐增加。同时,反应变得更加相位超前,刺激开始到峰值速度出现的反应时间从三角波刺激的平均300毫秒减少到200毫秒。5. 当刺激波形的幅度和方向突然发生意外变化时,诱发的眼球运动的峰值速度和方向与当前视觉刺激不匹配,但与刺激中先前序列的特征高度相关。6. 当刺激波形的频率突然变化时,诱发的预测性眼球运动的时间与先前序列的周期性相适应,但与新序列不适应。7. 结果表明,预测是通过存储有关眼球速度大小和时间的信息来进行的。无论目标暴露持续时间或基本刺激频率如何,平均眼球速度反应的轨迹在形式上相似,这表明预测估计是以固定持续时间但幅度变化的定型脉冲群形式在周期性估计器的控制下释放的。(摘要截短至400字)

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