首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Alexander’s Law in Patients with Acute Vestibular Tone Asymmetry—Evidence for Multiple Horizontal Neural Integrators
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Alexander’s Law in Patients with Acute Vestibular Tone Asymmetry—Evidence for Multiple Horizontal Neural Integrators

机译:急性前庭音不对称患者的亚历山大定律—多个水平神经积分器的证据

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摘要

Alexander’s law (AL) states that the slow-phase velocity of spontaneous nystagmus of peripheral vestibular origin is dependent on horizontal gaze position, with greater velocity when gaze is directed in the fast-phase direction. AL is thought to be a compensatory reaction resulting from adaptive changes in the horizontal ocular motor neural integrator. Until now, only horizontal eye movements have been investigated with respect to AL. Because spontaneous nystagmus usually includes vertical and torsional components, we asked whether horizontal gaze changes would have an effect on the 3D drift of spontaneous nystagmus and, thus, on the vertical/torsional neural integrator. We hypothesized that AL reduces all nystagmus components proportionally. Moreover, we questioned the classical theory of a single bilaterally organized horizontal integrator and searched for nonlinearities of AL implying a network of multiple integrators. Using dual scleral search coils, we measured AL in 17 patients with spontaneous nystagmus. Patients followed a pulsed laser dot at eye level jumping in 5° steps along the horizontal meridian between 25° right and left in otherwise complete darkness. AL was observed in 15 of 17 patients. Whereas individual patients typically showed a change of 3D-drift direction at different horizontal eye positions, the average change in direction was not different from zero. The strength of AL (= rate of change of total velocity with gaze position) correlated with nystagmus slow-phase velocity (Spearman’s rho = 0.5; p < 0.05) and, on average, did not change the 3D nystagmus drift direction. In general, eye velocity did not vary linearly with eye position. Rather, there was a stronger dependence of velocity on horizontal position when subjects looked in the slow-phase direction compared to the fast-phase direction. We conclude that the theory of a simple leak of a single horizontal neural integrator is not sufficient to explain all aspects of AL.
机译:亚历山大定律(AL)指出,周围前庭起源的自发性眼球震颤的慢相速度取决于水平注视位置,而当注视指向快相方向时,其速度较大。 AL被认为是由水平眼动神经积分器的适应性变化引起的补偿性反应。迄今为止,仅针对AL对水平眼动进行了研究。由于自发性眼球震颤通常包括垂直和扭转成分,因此我们询问水平的视线变化是否会影响自发性眼球震颤的3D漂移,从而影响垂直/扭转性神经积分器。我们假设AL可按比例减少所有眼球震颤分量。此外,我们质疑单个双边组织的水平积分器的经典理论,并搜索AL的非线性,这暗示了多个积分器的网络。使用双巩膜搜索线圈,我们测量了17例自发性眼球震颤的AL。患者在视线高度跟随脉冲激光点,在完全黑暗的环境中沿水平子午线在左右25°之间以5°的步长跳跃。 17例患者中有15例观察到AL。尽管个别患者通常在不同的水平眼位置显示3D漂移方向的变化,但平均方向变化却不为零。 AL的强度(=总速度随凝视位置的变化率)与眼球震颤慢相速度(Spearman的rho = 0.5; p <0.05)相关,并且平均而言,它不会改变3D眼球震颤的漂移方向。通常,眼睛速度不会随眼睛位置线性变化。相反,当对象在慢相方向上观察时,与快相方向上观察相比,速度对水平位置的依赖性更大。我们得出的结论是,单个水平神经积分器的简单泄漏理论不足以解释AL的所有方面。

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