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前庭向参与灵长类动物前庭眼反射运动学习的脑干神经元的输入。

Vestibular inputs to brain stem neurons that participate in motor learning in the primate vestibuloocular reflex.

作者信息

Broussard D M, Lisberger S G

机构信息

Department of Physiology, W. M. Keck Foundation Center for Integrative Neuroscience, University of California, San Francisco 94143.

出版信息

J Neurophysiol. 1992 Nov;68(5):1906-9. doi: 10.1152/jn.1992.68.5.1906.

DOI:10.1152/jn.1992.68.5.1906
PMID:1479453
Abstract
  1. Previous studies have described a subpopulation of interneurons in the vestibuloocular reflex (VOR) pathways that express large changes in their responses to head turns in conjunction with motor learning in the VOR. These neurons are called flocculus target neurons (FTNs) because they are inhibited at monosynaptic latencies by stimulation of the flocculus and ventral paraflocculus. 2. Electrical stimulation of the vestibular labyrinth revealed that FTNs receive excitatory monosynaptic inputs from the ipsilateral vestibular labyrinth and longer-latency, excitatory inputs from the contralateral labyrinth. 3. Our data show that commissural inhibition, which has been thought to be an important feature of vestibular processing, does not provide the dominant inputs from the contralateral labyrinth to FTNs. Instead, the inputs from both labyrinths are excitatory and may be functionally antagonistic. Changes in the balance of excitatory inputs from the two horizontal canals to FTNs could contribute to motor learning in the VOR.
摘要
  1. 先前的研究描述了前庭眼反射(VOR)通路中的一类中间神经元亚群,它们对头部转动的反应会随着VOR中的运动学习而发生巨大变化。这些神经元被称为绒球靶神经元(FTN),因为它们在受到绒球和腹侧旁绒球刺激时,会在单突触潜伏期受到抑制。2. 对前庭迷路的电刺激显示,FTN从同侧前庭迷路接受兴奋性单突触输入,并从对侧迷路接受潜伏期更长的兴奋性输入。3. 我们的数据表明,连合抑制一直被认为是前庭处理的一个重要特征,但它并不是对侧迷路向FTN提供的主要输入。相反,来自两个迷路的输入都是兴奋性的,并且可能在功能上相互拮抗。来自两条水平半规管的兴奋性输入与FTN之间平衡的变化可能有助于VOR中的运动学习。

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