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神经元对双向离垂直轴旋转的反应敏感性:单侧迷路切除术后猫双侧前庭核失衡的一个维度。

Neuronal response sensitivity to bidirectional off-vertical axis rotations: a dimension of imbalance in the bilateral vestibular nuclei of cats after unilateral labyrinthectomy.

作者信息

Chan Y S, Shum D K, Lai C H

机构信息

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

出版信息

Neuroscience. 1999;94(3):831-43. doi: 10.1016/s0306-4522(99)00374-7.

Abstract

In decerebrate cats after acute hemilabyrinthectomy, the response sensitivity of extracellularly recorded vestibular nuclear neurons on the lesioned and labyrinth-intact sides were examined quantitatively during constant velocity off-vertical axis rotations with an aim to elucidate the functional contribution of otolithic inputs to the ipsilateral and contralateral vestibular nuclei. The bidirectional response sensitivity, delta, was determined as the ratio of the gain during clockwise to that during counterclockwise rotations. A continuum of response sensitivity was identified: one-dimensional neurons showed symmetrically bidirectional response patterns, while two-dimensional neurons showed asymmetrically bidirectional patterns that in some cases approached unidirectional patterns with change in velocity. The proportion of two-dimensional neurons was significantly increased after acute hemilabyrinthectomy. Two-dimensional neurons that responded only to one direction of rotation in at least one of the velocities tested were described as unidirectional neurons. This unidirectional response pattern was observed in one-third of the entire neuronal population studied, but not in cats with both labyrinths intact, thus suggesting that such prominent broadly tuned responses are normally masked by converging otolithic inputs from the contralateral side. These neurons were found in higher proportion on the lesioned side than on the labyrinth-intact side. Among the 70% of unidirectional neurons that exhibited bidirectional response at some velocities and unidirectional response at others, prominent shifts in delta values (i.e. between 0/infinity and finite values) with velocity can be computed for each neuron. The shifts in delta values correlated with large shifts in the response dynamics and spatial orientation as the response pattern changed with velocity. The response orientations of the unidirectional neurons pointed in all directions on the horizontal plane. When all the two-dimensional neurons (i.e. both the unidirectionally and bidirectionally responsive ones) were pooled, imbalances in the distribution of the response orientations and in response gain were found between the ipsilateral-side-down/head-down half-circle and the contralateral-side-down/head-up half-circle on the labyrinth-intact side, but not on the lesioned side. These results, derived from spatiotemporal processing of gravitational signals, reveal a novel dimension of imbalance between neuronal populations in the two vestibular nuclear complexes after acute lesion of one labyrinth. This feature would provide, on the one hand, deranged cues of spatial orientation and direction during slow head excursions and, on the other, a framework for the dynamic behavioral deficits associated with hemilabyrinthectomy.

摘要

在急性半规管切除术后的去大脑猫中,通过在等速非垂直轴旋转过程中定量检测细胞外记录的前庭核神经元在损伤侧和迷路完整侧的反应敏感性,以阐明耳石输入对同侧和对侧前庭核的功能贡献。双向反应敏感性δ被确定为顺时针旋转时的增益与逆时针旋转时的增益之比。确定了反应敏感性的连续体:一维神经元表现出对称的双向反应模式,而二维神经元表现出不对称的双向模式,在某些情况下,随着速度变化接近单向模式。急性半规管切除术后二维神经元的比例显著增加。在至少一个测试速度下仅对一个旋转方向有反应的二维神经元被描述为单向神经元。在整个研究的神经元群体中有三分之一观察到这种单向反应模式,但在双侧迷路完整的猫中未观察到,因此表明这种突出的广泛调谐反应通常被来自对侧的汇聚耳石输入所掩盖。这些神经元在损伤侧的比例高于迷路完整侧。在70%的单向神经元中,有些速度下表现出双向反应,有些速度下表现出单向反应,每个神经元都可以计算出δ值随速度的显著变化(即从0/无穷大到有限值)。随着反应模式随速度变化,δ值的变化与反应动力学和空间取向的大变化相关。单向神经元的反应取向指向水平面上的所有方向。当所有二维神经元(即单向和双向反应的神经元)合并在一起时,并在迷路完整侧,发现同侧向下/头向下半圆和对侧向下/头向上半圆之间的反应取向分布和反应增益存在不平衡,但在损伤侧没有。这些从重力信号的时空处理中得出的结果揭示了一侧迷路急性损伤后两个前庭核复合体中神经元群体之间不平衡的一个新维度。这一特征一方面会在缓慢头部运动时提供空间取向和方向的紊乱线索,另一方面为与半规管切除术相关的动态行为缺陷提供一个框架。

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