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扫视期间人类前庭眼反射的调制:通过头部高频振荡和扭矩脉冲进行探测。

Modulation of the human vestibuloocular reflex during saccades: probing by high-frequency oscillation and torque pulses of the head.

作者信息

Tabak S, Smeets J B, Collewijn H

机构信息

Department of Physiology, Helmholtz School, Faculty of Medicine, Erasmus University Rotterdam, The Netherlands.

出版信息

J Neurophysiol. 1996 Nov;76(5):3249-63. doi: 10.1152/jn.1996.76.5.3249.

Abstract
  1. We probed the gain and phase of the vestibuloocular reflex (VOR) during the execution of voluntary gaze saccades, with continuous oscillation or acceleration pulses, applied through a torque helmet. 2. Small-amplitude (< 1 degree), high-frequency (10-14 Hz) head oscillations in the horizontal or vertical plane were superimposed on ongoing horizontal gaze saccades (40-100 degrees). Torque pulses to the head ("with" or "against" gaze) were superimposed on 40 degrees horizontal saccades. Eye and head movements were precisely measured with sensor coils in magnetic fields. 3. Techniques were developed to separate the oscillatory (horizontal or vertical) component from the gaze shift and obtain VOR gain and phase with Fourier techniques from the relation between eye-in-head and head oscillations. These involved either subtraction of exactly matching saccades with and without oscillation (drawback: low yield) or time shifting of successive trials to synchronize the oscillations (drawback: slight time blurring of saccades). 4. The results of these matching and synchronization methods were essentially identical and consistent. Presaccadic gain values of the horizontal VOR (typically about unity) were reduced by, on average, approximately 20 and 50% during horizontal saccades of 40 and 100 degrees, respectively. These percentages may be truncated because of methodological limitations, but even after taking these into account (on the basis of simulation experiments with 2 different, theoretical profiles of suppression) our results do not support a complete saccadic VOR suppression for any substantial fraction of saccadic duration. Qualitatively similar changes were found when the vertical VOR was probed during 100 degrees horizontal saccades. 5. Concomitantly with the reductions in gain, VOR phase was advanced by approximately 20 degrees during the saccade. 6. In the wake of gaze saccades, VOR gain was consistently elevated (to approximately 1.0) above the presaccadic level (approximately 0.9). We submit that this mechanism ensures stable fixation of the newly acquired target at a time when the head is still moving substantially. 7. Although the responses to head torque pulses showed idiosyncratic asymmetries, analysis of the differences in eye and head movements for pulses with and against consistently showed a sharp fall of VOR gain at saccadic onset, following an approximately exponential course with a time constant of approximately 50 ms. This decay may be assumed to reflect VOR gain for a period of approximately 50 ms, after which secondary gaze control mechanisms become dominant. 8. The time course of the gain decay and phase shift of the VOR suggest that suppression of the "integrative (position) loop" of the VOR circuit was more complete than suppression of the direct, "velocity" pathway.
摘要
  1. 我们通过扭矩头盔施加连续振荡或加速脉冲,在执行自愿性注视扫视期间探测前庭眼反射(VOR)的增益和相位。2. 在水平或垂直平面内的小幅度(<1度)、高频(10 - 14赫兹)头部振荡被叠加在正在进行的水平注视扫视(40 - 100度)上。向头部施加的扭矩脉冲(“同向”或“反向”注视)被叠加在40度水平扫视上。眼睛和头部运动通过磁场中的传感器线圈精确测量。3. 开发了一些技术,以从注视转移中分离出振荡(水平或垂直)成分,并通过傅里叶技术根据眼在头中的运动与头部振荡之间的关系获得VOR增益和相位。这些技术包括减去有振荡和无振荡时完全匹配的扫视(缺点:产量低),或者对连续试验进行时间移位以使振荡同步(缺点:扫视略有时间模糊)。4. 这些匹配和同步方法的结果基本相同且一致。水平VOR的扫视前增益值(通常约为1)在40度和100度水平扫视期间分别平均降低了约20%和50%。由于方法学限制,这些百分比可能会被截断,但即使考虑到这些因素(基于对两种不同理论抑制曲线的模拟实验),我们的结果也不支持在任何可观的扫视持续时间内完全抑制扫视VOR。当在100度水平扫视期间探测垂直VOR时,发现了定性上类似的变化。5. 与增益降低同时,VOR相位在扫视期间提前了约20度。6. 在注视扫视之后,VOR增益持续升高(至约1.0),高于扫视前水平(约0.9)。我们认为,这种机制可确保在头部仍大幅移动时稳定地固定新获取的目标。7. 尽管对头部扭矩脉冲的反应显示出个体差异不对称,但对同向和反向脉冲的眼动和头动差异分析始终表明,在扫视开始时VOR增益急剧下降,遵循近似指数曲线,时间常数约为50毫秒。这种衰减可能被认为反映了约50毫秒时间段内的VOR增益,之后次级注视控制机制占主导。8. VOR增益衰减和相位偏移的时间进程表明,VOR回路的“积分(位置)环路”的抑制比直接的“速度”通路的抑制更完全。

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