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前庭机制

Vestibular mechanisms.

作者信息

Precht W

出版信息

Annu Rev Neurosci. 1979;2:265-89. doi: 10.1146/annurev.ne.02.030179.001405.

Abstract

It is apparent from this and other reviews of the subject that our knowledge of vestibular function is most complete for the primary canal and otolithic afferents. Relatively little progress has been made in the understanding of receptor mechanisms and the functional importance of the efferent vestibular system. Since most of it has been summarized previously the latter were not considered here. Considerably more knowledge has accumulated in the field of central vestibular mechanisms, particularly those related to eye movements. Recent advances in functional synaptology of direct and indirect vestibuloocular pathways are described. It appears that the indirect pathways are essential for the central integration of the peripheral head velocity into a central eye position signal. Candidates for the neural integrator are presented and discussed and their connectivity described both for the horizontal and the relatively poorly studied vertical eye movement system. This field will certainly be studied extensively during the next years. Another interesting field is the role of the cerebellum in the control the vestibuloocular reflex. Recent data and hypotheses, including the problem of cerebellar plasticity, are summarized and evaluated. That the vestibular nuclei are by no means a simple relay system for specific vestibular signals destined for other sensory or motor centers is evidenced in this review by the description of multiple canal-canal, canalotolith, and visual-vestibular convergence at the nuclear level. Canal-otolith and polysensory convergence in vestibular neurons enables them to correct for the inherent inadequacies of the peripheral canal system in the low frequency range. The mechanisms of polysensory interaction in the central vestibular system will undoubtedly be an important and interesting field for future research.

摘要

从关于该主题的这篇综述及其他综述中可以明显看出,我们对前庭功能的了解在主要半规管和耳石传入方面最为完整。在理解受体机制和传出前庭系统的功能重要性方面进展相对较小。由于其中大部分内容此前已被总结,故在此未作考虑。在中枢前庭机制领域,尤其是与眼球运动相关的机制方面,已经积累了更多的知识。本文描述了直接和间接前庭眼反射通路功能突触学的最新进展。似乎间接通路对于将外周头部速度中枢整合为中枢眼位信号至关重要。文中提出并讨论了神经整合器的候选者,并描述了它们在水平和研究相对较少的垂直眼球运动系统中的连接情况。在未来几年,这个领域肯定会得到广泛研究。另一个有趣的领域是小脑在控制前庭眼反射中的作用。本文总结并评估了最新的数据和假设,包括小脑可塑性问题。通过在核水平描述多个半规管 - 半规管、半规管 - 耳石以及视觉 - 前庭的汇聚情况,本综述证明前庭核绝不是一个简单的将特定前庭信号传递到其他感觉或运动中枢的中继系统。前庭神经元中的半规管 - 耳石和多感觉汇聚使它们能够校正外周半规管系统在低频范围内固有的不足之处。中枢前庭系统中多感觉相互作用的机制无疑将是未来研究的一个重要且有趣的领域。

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