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家兔水平和垂直前庭眼反射的比较。

A comparison of the horizontal and vertical vestibulo-ocular reflexes of the rabbit.

作者信息

Barmack N H

出版信息

J Physiol. 1981 May;314:547-64. doi: 10.1113/jphysiol.1981.sp013724.

Abstract
  1. The gain and phase of the horizontal (H.v.o.r.) and vertical (V.v.o.r.) vestibulo-ocular reflexes were measured in rabbits. The V.v.o.r. was evoked by sinusoidal rolls about the longitudinal axis of the rabbit. This axis was maintained at different orientations with respect to the earth horizontal axis: V.v.o.r. 0 degrees , prone; V.v.o.r. 90 degrees , ;nose-up'; V.v.o.r. 180 degrees , supine; V.v.o.r. 0 degrees L, left side down.2. In contrast to the H.v.o.r., the V.v.o.r. 0 degrees had a higher gain (eye velocity/head velocity) and a smaller phase lead (eye position + 180 degrees with respect to head position) at low frequencies of sinusoidal vestibular stimulation (+/- 10 deg, 0.005-0.05 Hz). At higher frequencies (0.05-0.8 Hz), the H.v.o.r. and V.v.o.r. 0 degrees were equivalent in both gain and phase.3. The low-frequency gain of the V.v.o.r. was smallest in the ;nose-up' orientation. The V.v.o.r. 90 degrees was equivalent in both gain and phase to the H.v.o.r. over the entire range of frequencies tested (0.005-0.8 Hz). Threshold angular accelerations for the H.v.o.r. and V.v.o.r. 90 degrees were below 0.04 deg/sec(2).4. The compensatory eye movements of the H.v.o.r. were frequently interrupted by anticompensatory re-setting eye movements. These anticompensatory re-setting eye movements were present in the V.v.o.r. 90 degrees , but not in the V.v.o.r. 0 degrees .5. An estimate gain and phase of the otolithic component of the V.v.o.r. 0 degrees was derived by subtraction of the V.v.o.r. 90 degrees (semicircular canal signal) from the V.v.o.r. 0 degrees (semicircular canal signal+otolith signal). This procedure was based on the assumption that the signals from the otolith organs and vertical semicircular canals combine linearly.6. The V.v.o.r. 180 degrees provided an interesting test of the assumption of linear combination of otolithic and semicircular canal signals by reversing the phase of the modulated otolithic signal. The data indicated that the V.v.o.r. 180 degrees is non-linear.
摘要
  1. 在兔身上测量水平(H.v.o.r.)和垂直(V.v.o.r.)前庭眼反射的增益和相位。通过绕兔的纵轴进行正弦滚动来诱发V.v.o.r.。该轴相对于地球水平轴保持在不同方向:V.v.o.r. 0度,俯卧位;V.v.o.r. 90度,“鼻朝上”;V.v.o.r. 180度,仰卧位;V.v.o.r. 0度L,左侧朝下。

  2. 与H.v.o.r.相比,在正弦前庭刺激的低频(±10度,0.005 - 0.05赫兹)时,V.v.o.r. 0度具有更高的增益(眼速度/头速度)和更小的相位超前(眼位置相对于头位置 + 180度)。在较高频率(0.05 - 0.8赫兹)时,H.v.o.r.和V.v.o.r. 0度在增益和相位方面相当。

  3. V.v.o.r.的低频增益在“鼻朝上”方向最小。在测试的整个频率范围(0.005 - 0.8赫兹)内,V.v.o.r. 90度在增益和相位方面与H.v.o.r.相当。H.v.o.r.和V.v.o.r. 90度的阈值角加速度低于0.04度/秒²。

  4. H.v.o.r.的代偿性眼动经常被反代偿性复位眼动打断。这些反代偿性复位眼动存在于V.v.o.r. 90度中,但不存在于V.v.o.r. 0度中。

  5. 通过从V.v.o.r. 0度(半规管信号 + 耳石信号)中减去V.v.o.r. 90度(半规管信号)来推导V.v.o.r. 0度的耳石成分的估计增益和相位。该过程基于耳石器官和垂直半规管的信号线性组合的假设。

  6. V.v.o.r. 180度通过反转调制耳石信号的相位,对耳石和半规管信号线性组合的假设提供了一个有趣的测试。数据表明V.v.o.r. 180度是非线性的。

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