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小脑对前庭眼反射的适应性增益控制。

Adaptive gain control of vestibuloocular reflex by the cerebellum.

作者信息

Robinson D A

出版信息

J Neurophysiol. 1976 Sep;39(5):954-69. doi: 10.1152/jn.1976.39.5.954.

Abstract
  1. The gain of the vestibuloocular reflex (slow-phase eye velocity/head velocity) was measured in 17 adult cats. 2. The gain of the reflex, in the dark, was 0.90 (+/-0.15 SD) over the frequency range 0.03-1.2 Hz. 3. In the range 0.01-0.15 Hz, the phase behaved as though the overall reflex time constant were 12 s or greater. The cupula time constant is 4 s. Therefore, the central part of the reflex must manipulate the canal signal to improve its low-frequency response by a factor of at least three. 4. When the cats wore left-right reversing prisms chronically and were also rotated for 2 h every day, the reflex underwent large, plastic changes. The gain, tested in the dark, decreased by 93% at 0.05 Hz and 55% at 1.2 Hz. In effect, the low-frequency response was abolished. The process took about 8 days. 5. In the light, with reversed vision, the gain decreased further and, at low frequencies, the eye movements did reverse in direction. 6. When the vestibulocerebellum was removed, the gain, in the dark, rose to about 1.17 and the plastic changes caused by reversing prisms were completely abolished. 7. Reversing prisms create vestibuloocular dysmetria. The change in gain they produce is considered to be an adaptive response designed to reduce image motion on the retina during head movements. The vestibulocerebellum is necessary for this adaptive process. It is proposed that detecting and repairing dysmetria (of natural origin) is an important cerebellar function.
摘要
  1. 在17只成年猫身上测量了前庭眼反射(慢相眼速度/头速度)的增益。2. 在黑暗中,该反射的增益在0.03 - 1.2赫兹的频率范围内为0.90(±0.15标准差)。3. 在0.01 - 0.15赫兹范围内,相位表现得就好像整个反射时间常数为12秒或更大。壶腹时间常数为4秒。因此,反射的中枢部分必须处理半规管信号,以将其低频响应提高至少三倍。4. 当猫长期佩戴左右反转棱镜并且每天还旋转2小时时,反射会发生巨大的可塑性变化。在黑暗中测试的增益在0.05赫兹时下降了93%,在1.2赫兹时下降了55%。实际上,低频响应被消除了。这个过程大约需要8天。5. 在有反转视觉的光照条件下,增益进一步下降,并且在低频时,眼球运动方向确实发生了反转。6. 当切除前庭小脑时,在黑暗中的增益上升到约1.17,并且由反转棱镜引起的可塑性变化被完全消除。7. 反转棱镜会导致前庭眼运动失调。它们产生的增益变化被认为是一种适应性反应,旨在减少头部运动期间视网膜上的图像运动。前庭小脑对于这个适应性过程是必要的。有人提出,检测和修复(自然产生的)运动失调是小脑的一项重要功能。

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