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损伤后前庭重组改善了青蛙黄斑眼反射的增益,但损害了其空间调谐。

Postlesional vestibular reorganization improves the gain but impairs the spatial tuning of the maculo-ocular reflex in frogs.

作者信息

Rohregger Martin, Dieringer Norbert

机构信息

Department of Physiology, University of Munich, 80336 Munich, Germany.

出版信息

J Neurophysiol. 2003 Dec;90(6):3736-49. doi: 10.1152/jn.00561.2003. Epub 2003 Jul 30.

Abstract

The ramus anterior (RA) of N.VIII was sectioned unilaterally. Two months later we analyzed in vivo responses of the ipsi- and of the contralesional abducens nerve during horizontal and vertical linear acceleration in darkness. The contralesional abducens nerve had become responsive again to linear acceleration either because of a synaptic reorganization in the vestibular nuclei on the operated side and/or because of a reinnervation of the utricular macula by regenerating afferent nerve fibers. Significant differences in the onset latencies and in the acceleration sensitivities allowed a separation of RA frogs in a group without and in a group with functional utricular reinnervation. Most important, the vector orientation for maximal abducens nerve responses was clearly altered: postlesional synaptic reorganization resulted in the emergence of abducens nerve responses to vertical linear acceleration, a response component that was barely detectable in RA frogs with utricular reinnervation and that was absent in controls. The ipsilesional abducens nerve, however, exhibited unaltered responses in either group of RA frogs. The altered spatial tuning properties of contralesional abducens nerve responses are a direct consequence of the postlesional expansion of signals from intact afferent nerve and excitatory commissural fibers onto disfacilitated 2nd-order vestibular neurons on the operated side. These results corroborate the notion that postlesional vestibular reorganization activates a basic neural reaction pattern with more beneficial results at the cellular than at the network level. However, given that the underlying mechanism is activity-related, rehabilitative training after vestibular nerve lesion can be expected to shape the ongoing reorganization.

摘要

第八对脑神经的前支(RA)被单侧切断。两个月后,我们分析了在黑暗中水平和垂直线性加速度刺激下,患侧和对侧展神经的体内反应。对侧展神经再次对线性加速度产生反应,这可能是由于手术侧前庭核的突触重组和/或再生的传入神经纤维对椭圆囊斑的重新支配。起始潜伏期和加速度敏感性的显著差异使得可以将RA青蛙分为无功能性椭圆囊重新支配的组和有功能性椭圆囊重新支配的组。最重要的是,展神经最大反应的矢量方向明显改变:损伤后突触重组导致展神经对垂直线性加速度产生反应,这种反应成分在有椭圆囊重新支配的RA青蛙中几乎检测不到,而在对照组中则不存在。然而,在两组RA青蛙中,患侧展神经的反应均未改变。对侧展神经反应的空间调谐特性改变是损伤后完整传入神经和兴奋性连合纤维的信号扩展到手术侧失抑制的二级前庭神经元的直接结果。这些结果证实了损伤后前庭重组激活了一种基本神经反应模式的观点,这种模式在细胞水平上比在网络水平上产生更有益的结果。然而,鉴于潜在机制与活动相关,可以预期前庭神经损伤后的康复训练会影响正在进行的重组。

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