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猫的非垂直旋转轴诱发的眼球震颤

Nystagmus induced by off-vertical rotation axis in the cat.

作者信息

Darlot C, Denise P

机构信息

Laboratoire de Physiologie Neurosensorielle du CNRS, Paris, France.

出版信息

Exp Brain Res. 1988;73(1):78-90. doi: 10.1007/BF00279663.

Abstract
  1. In the alert cat, nystagmus induced by off-vertical axis rotation (OVAR) was recorded following steps in head velocity or ramps of velocity at constant acceleration below canal threshold. Dependence of nystagmus characteristics on tilt angle of rotation axis and head velocity was studied. Similar results were obtained with both types of stimulation. 2) Mean and modulation amplitude of horizontal eye velocity increased with tilt angle in the range 0-30 degrees. 3) Both variables increased also with head velocity, but with different trends, probably because they are set by different mechanisms. When head rotational velocity was increased above 80 degrees/s, mean eye velocity progressively decreased to zero. 4) In spite of variations from one animal to another, some regularity was observed in the phase of eye velocity modulation. In several cases, a reduction in phase lead of eye velocity with respect to conventional origin of phases (nose-down position) was observed when head velocity increased. 5) Time constant of post-OVAR nystagmus decreased with the tilt angle of the rotation axis from gravity, but not with the orientation of the head with respect to rotation axis. 6) The results could be accounted for by a general equation describing the vestibulo-ocular reflex, provided that estimates of kinematic variables of head movement (head rotational and translational velocities), and visual target distance could be computed by the Central Nervous System.
摘要
  1. 在警觉的猫中,在头部速度的各步骤或低于半规管阈值的恒定加速度下的速度斜坡之后,记录由离垂直轴旋转(OVAR)诱发的眼球震颤。研究了眼球震颤特征对旋转轴倾斜角度和头部速度的依赖性。两种刺激类型都获得了相似的结果。2) 水平眼速度的平均值和调制幅度在0至30度范围内随倾斜角度增加。3) 这两个变量也随头部速度增加,但趋势不同,可能是因为它们由不同机制设定。当头部旋转速度增加到80度/秒以上时,平均眼速度逐渐降至零。4) 尽管不同动物之间存在差异,但在眼速度调制的相位中观察到了一些规律性。在几种情况下,当头部速度增加时,观察到眼速度相对于传统相位起点(鼻下位置)的相位超前减少。5) OVAR后眼球震颤的时间常数随旋转轴相对于重力的倾斜角度减小,但不随头部相对于旋转轴的方向而减小。6) 只要中枢神经系统能够计算头部运动的运动学变量(头部旋转和平移速度)以及视觉目标距离,这些结果就可以用描述前庭眼反射的一般方程来解释。

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