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灵长类前庭眼反射对外周前庭输入改变的适应。I. 外侧半规管失活后水平前庭眼反射的频率特异性恢复。

Adaptation of primate vestibuloocular reflex to altered peripheral vestibular inputs. I. Frequency-specific recovery of horizontal VOR after inactivation of the lateral semicircular canals.

作者信息

Angelaki D E, Hess B J, Arai Y, Suzuki J

机构信息

Department of Surgery (Otolaryngology), University of Mississippi Medical Center, Jackson 39216, USA.

出版信息

J Neurophysiol. 1996 Nov;76(5):2941-53. doi: 10.1152/jn.1996.76.5.2941.

DOI:10.1152/jn.1996.76.5.2941
PMID:8930246
Abstract
  1. The adaptive plasticity of the vestibuloocular reflex (VOR) following a selective lesion of the peripheral vestibular organs was investigated in rhesus monkeys whose lateral semicircular canals were inactivated by plugging of the canal lumen in both ears. Gain and phase of horizontal, vertical, and torsional slow-phase eye velocity were determined from three-dimensional eye movement recordings obtained acutely after the plugging operation, as well as in regular intervals up to 10 mo later. 2. Acutely after plugging, horizontal VOR was minimal during yaw rotation with gains of < 0.1 at all frequencies. Horizontal VOR gain gradually increased over time, reaching gains of 0.4-0.5 for yaw oscillations at 1.1 Hz approximately 5 mo after lateral canal inactivation. This response recovery was strongly frequency dependent: horizontal VOR gains were largest at the highest frequency tested and progressively decreased for lower frequencies. Below approximately 0.1 Hz, no consistent horizontal VOR could be elicited even 10 mo after plugging. 3. The frequency-dependent changes in gain paralleled changes in horizontal VOR phase. Below approximately 0.1-0.05 Hz large phase leads were present, similarly as in semicircular canal primary afferents. Smaller phase leads were also present at higher frequencies, particularly at 1.1 Hz (the highest frequency tested). 4. Consistent with the afferent-like dynamics of the adapted horizontal VOR, per- and postrotatory horizontal responses to constant-velocity yaw rotations were short lasting. Time constants of the slow-phase eye velocity envelope of the horizontal postrotatory nystagmus were approximately 2 s. Nonetheless, a consistent horizontal optokinetic afternystagmus was evoked in plugged animals. 5. A torsional component that was absent in intact animals was consistently present during yaw rotation acutely after lateral canal inactivation and remained approximately constant thereafter. The frequency response characteristics of this torsional component resembled those of the adapted horizontal slow-phase responses: gain decreased and large phase leads were introduced at frequencies below approximately 0.05-0.1 Hz. Torsional responses elicited by roll oscillations in supine position, on the other hand, were indistinguishable in their dynamics from intact animals. No consistent vertical nystagmus was elicited during yaw rotation. 6. Our results show that there is a slow, frequency-specific recovery of horizontal VOR after selective inactivation of the lateral semicircular canals. Both the spatial organization and the dynamic properties of the adapted VOR responses are distinctly different from responses in intact animals, suggesting complex changes in the underlying vestibuloocular circuitry.
摘要
  1. 我们研究了恒河猴外周前庭器官选择性损伤后前庭眼反射(VOR)的适应性可塑性。这些猴子双耳的外侧半规管管腔被堵塞,导致外侧半规管失活。在堵塞手术后立即以及之后长达10个月的定期时间点,通过三维眼动记录来确定水平、垂直和扭转慢相眼速度的增益和相位。2. 堵塞后立即进行测试时,在偏航旋转期间水平VOR最小,所有频率下的增益均<0.1。随着时间推移,水平VOR增益逐渐增加,在外侧半规管失活约5个月后,1.1 Hz偏航振荡的增益达到0.4 - 0.5。这种反应恢复强烈依赖于频率:在测试的最高频率下水平VOR增益最大,较低频率下逐渐降低。在约0.1 Hz以下,即使在堵塞10个月后也无法引出一致的水平VOR。3. 增益的频率依赖性变化与水平VOR相位变化平行。在约0.1 - 0.05 Hz以下存在大的相位超前,与半规管初级传入神经中的情况类似。在较高频率,特别是1.1 Hz(测试的最高频率)也存在较小的相位超前。4. 与适应后的水平VOR的传入样动力学一致,对恒速偏航旋转的旋转前和旋转后水平反应持续时间较短。水平旋转后眼震慢相眼速度包络的时间常数约为2秒。尽管如此,在堵塞的动物中仍能引出一致的水平视动性眼震。5. 在外侧半规管失活后立即进行偏航旋转时,完整动物中不存在的扭转成分持续存在,此后大致保持恒定。该扭转成分的频率响应特性类似于适应后的水平慢相反应:在约0.05 - 0.1 Hz以下的频率,增益降低并引入大的相位超前。另一方面,仰卧位时侧滚振荡引发的扭转反应在动力学上与完整动物无差异。在偏航旋转期间未引出一致的垂直眼震。6. 我们的结果表明,外侧半规管选择性失活后,水平VOR存在缓慢的、频率特异性的恢复。适应后的VOR反应的空间组织和动态特性与完整动物的反应明显不同,这表明潜在的前庭眼神经回路发生了复杂变化。

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