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[耳石相关前庭系统的神经元可塑性]

[Neuronal plasticity of otolith-related vestibular system].

作者信息

Lai Suk-King, Lai Chun-Hong, Zhang Fu-Xing, Ma Chun-Wai, Shum Daisy K Y, Chan Ying-Shing

机构信息

Department of Physiology, LKS Faculty of Medicine, The University of Hong Kong, Hong Kong, China.

出版信息

Zhongguo Yi Xue Ke Xue Yuan Xue Bao. 2008 Dec;30(6):741-6.

Abstract

This review focuses on our effort in addressing the development and lesion-induced plasticity of the gravity sensing system. After severance of sensory input from one inner ear, there is a bilateral imbalance in response dynamics and spatial coding behavior between neuronal subpopulations on the two sides. These data provide the basis for deranged spatial coding and motor deficits accompanying unilateral labyrinthectomy. Recent studies have also confirmed that both glutamate receptors and neurotrophin receptors within the bilateral vestibular nuclei are implicated in the plasticity during vestibular compensation and development. Changes in plasticity not only provide insight into the formation of a spatial map and recovery of vestibular function but also on the design of drugs for therapeutic strategies applicable to infants or vestibular disorders such as vertigo and dizziness.

摘要

本综述聚焦于我们在研究重力感应系统的发育及损伤诱导可塑性方面所做的工作。切断一侧内耳的感觉输入后,两侧神经元亚群之间在反应动力学和空间编码行为上出现双侧失衡。这些数据为单侧迷路切除术后空间编码紊乱和运动缺陷提供了依据。近期研究还证实,双侧前庭核内的谷氨酸受体和神经营养因子受体均与前庭代偿和发育过程中的可塑性有关。可塑性的变化不仅有助于深入了解空间图谱的形成和前庭功能的恢复,还能为适用于婴儿或眩晕等前庭疾病治疗策略的药物设计提供思路。

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