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Quantitative analysis of the velocity characteristics of optokinetic nystagmus and optokinetic after-nystagmus

机译:视动性眼球震颤和视动性眼球震颤的速度特征的定量分析

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摘要

1. Velocity characteristics of optokinetic nystagmus (OKN) and optokinetic after-nystagmus (OKAN) induced by constant velocity full field rotation were studied in rhesus monkeys. A technique is described for estimating the dominant time constant of slow phase velocity curves and of monotonically changing data. Time constants obtained by this technique were used in formulating a model of the mechanism responsible for producing OKN and OKAN.2. Slow phase velocity of optokinetic nystagmus in response to steps in stimulus velocity was shown to be composed of two components, a rapid rise, followed by a slower rise to a steady-state value. Peak values of OKN slow phase velocity increased linearly with increases in stimulus velocity to 180°/sec. Maximum slow phase eye velocities in the monkey are 2-3 times as great as in humans.3. At the onset of OKAN, slow phase velocity falls by about 10-20%, followed by a slower decline to zero. Peak OKAN slow phase velocities were linearly related to optokinetic stimulus velocities up to 90-120°/sec. Above 120°/sec OKAN slow phase velocity saturated although OKN slow phase velocity continued to increase.4. The charge and discharge characteristics of OKAN were studied. The OKAN mechanism charged in 5-10 sec and discharged over 20-60 sec in darkness. The time constants of decay in OKAN slow phase velocity decreased as stimulus velocities increased. They also decreased on repeated testing. In several monkeys there was a consistent difference in the rate of decay of OKAN slow phase velocity to the right and left.5. Extended visual fixation discharged the activity responsible for producing OKAN. Short fixation times caused only a partial discharge of the OKAN mechanism. Following brief periods of fixation, OKAN resumed but with depressed slow phase velocities.6. A model based on a state realisation of a peak detector was formulated which approximately reproduces the salient characteristics of OKN and OKAN. This model predicts the three dominant characteristics of OKAN: (1) charge over 5-7 sec, (2) slow discharge in darkness, and (3) rapid discharge with visual fixation. With the addition of direct fast forward pathways, it also correctly predicts the rapid and slow rise in OKN. We postulate that OKAN is produced by a central integrator which is also active during OKN. Presumably this integrator acts to maximize velocities during OKN and to smooth and stabilize ocular following during movement of the visual surround.
机译:1.研究了恒速恒视全场旋转引起的视动性眼球震颤(OKN)和视动性眼球后震颤(OKAN)的速度特征。描述了一种用于估计慢相速度曲线和单调变化数据的主要时间常数的技术。通过该技术获得的时间常数被用于建立负责产生OKN和OKAN.2的机理模型。视动性眼球震颤的缓慢相速度响应于刺激速度的阶跃而显示为由两个部分组成,即快速上升,然后缓慢上升至稳态值。 OKN慢相速度的峰值随刺激速度的增加线性增加,达到180°/ sec。猴子的最大慢相眼速度是人类的2-3倍。3。在OKAN开始时,缓慢的相速度下降约10-20%,然后缓慢下降到零。 OKAN峰值慢相速度与视动刺激速度高达90-120°/ sec呈线性关系。高于120°/ sec的OKAN慢相速度已饱和,尽管OKN慢相速度继续增加4。研究了OKAN的充放电特性。 OKAN机制在5-10秒内充电,在黑暗中放电20-60秒。 OKAN慢相速度的衰减时间常数随刺激速度的增加而减小。经过反复测试,它们也降低了。在几只猴子中,OKAN慢相速度左右两侧的衰减率存在一致的差异。5。长时间的目视注视消除了产生OKAN的活动。较短的固定时间仅导致OKAN机制的部分放电。经过短暂的注视后,OKAN恢复,但是缓慢的慢相速度6。制定了基于峰值检测器状态实现的模型,该模型大致再现了OKN和OKAN的显着特征。该模型预测了OKAN的三个主要特征:(1)在5到7秒内充电;(2)在黑暗中缓慢放电;(3)在视觉固定下快速放电。通过添加直接的快进路径,它还可以正确预测OKN的快速和缓慢上升。我们假设OKAN由中央集成商生产,该集成商在OKN期间也处于活动状态。据推测,该积分器的作用是在OKN期间最大化速度,并在视觉范围内移动时使眼球顺畅并稳定。

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