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多通道前庭假体可快速改善猴子的 3D 前庭眼反射定向。

Directional plasticity rapidly improves 3D vestibulo-ocular reflex alignment in monkeys using a multichannel vestibular prosthesis.

机构信息

Department of Otolaryngology-Head and Neck Surgery, Johns Hopkins University School of Medicine, Baltimore, USA,

出版信息

J Assoc Res Otolaryngol. 2013 Dec;14(6):863-77. doi: 10.1007/s10162-013-0413-0. Epub 2013 Sep 8.

Abstract

Bilateral loss of vestibular sensation can be disabling. We have shown that a multichannel vestibular prosthesis (MVP) can partly restore vestibular sensation as evidenced by improvements in the 3-dimensional angular vestibulo-ocular reflex (3D VOR). However, a key challenge is to minimize misalignment between the axes of eye and head rotation, which is apparently caused by current spread beyond each electrode's targeted nerve branch. We recently reported that rodents wearing a MVP markedly improve 3D VOR alignment during the first week after MVP activation, probably through the same central nervous system adaptive mechanisms that mediate cross-axis adaptation over time in normal individuals wearing prisms that cause visual scene movement about an axis different than the axis of head rotation. We hypothesized that rhesus monkeys would exhibit similar improvements with continuous prosthetic stimulation over time. We created bilateral vestibular deficiency in four rhesus monkeys via intratympanic injection of gentamicin. A MVP was mounted to the cranium, and eye movements in response to whole-body passive rotation in darkness were measured repeatedly over 1 week of continuous head motion-modulated prosthetic electrical stimulation. 3D VOR responses to whole-body rotations about each semicircular canal axis were measured on days 1, 3, and 7 of chronic stimulation. Horizontal VOR gain during 1 Hz, 50 °/s peak whole-body rotations before the prosthesis was turned on was <0.1, which is profoundly below normal (0.94 ± 0.12). On stimulation day 1, VOR gain was 0.4-0.8, but the axis of observed eye movements aligned poorly with head rotation (misalignment range ∼30-40 °). Substantial improvement of axis misalignment was observed after 7 days of continuous motion-modulated prosthetic stimulation under normal diurnal lighting. Similar improvements were noted for all animals, all three axes of rotation tested, for all sinusoidal frequencies tested (0.05-5 Hz), and for high-acceleration transient rotations. VOR asymmetry changes did not reach statistical significance, although they did trend toward slight improvement over time. Prior studies had already shown that directional plasticity reduces misalignment when a subject with normal labyrinths views abnormal visual scene movement. Our results show that the converse is also true: individuals receiving misoriented vestibular sensation under normal viewing conditions rapidly adapt to restore a well-aligned 3D VOR. Considering the similarity of VOR physiology across primate species, similar effects are likely to occur in humans using a MVP to treat bilateral vestibular deficiency.

摘要

双侧前庭感觉丧失可能会导致残疾。我们已经证明,多通道前庭假体(MVP)可以部分恢复前庭感觉,这一点可以通过三维角前庭眼反射(3D VOR)的改善来证明。然而,一个关键的挑战是最小化眼轴和头旋转轴之间的不对准,这显然是由于当前电流超出每个电极靶向神经分支而引起的。我们最近报道说,佩戴 MVP 的啮齿动物在 MVP 激活后的第一周内,3D VOR 对准明显改善,这可能是通过中枢神经系统自适应机制实现的,该机制随着时间的推移介导正常个体佩戴棱镜时的交叉轴适应,棱镜会导致视场围绕与头旋转轴不同的轴移动。我们假设恒河猴会随着时间的推移通过连续的假体刺激表现出类似的改善。我们通过鼓室内注射庆大霉素在四只恒河猴中创建了双侧前庭缺陷。MVP 安装在颅骨上,并在连续头部运动调制假体电刺激的 1 周内,多次测量黑暗中全身被动旋转时的眼动。在慢性刺激的第 1、3 和 7 天,测量了每个半规管轴的全身旋转的 3D VOR 反应。在假体打开之前,1 Hz、50 °/s 峰值全身旋转时水平 VOR 增益<0.1,远低于正常水平(0.94 ± 0.12)。在刺激的第 1 天,VOR 增益为 0.4-0.8,但观察到的眼动轴与头旋转对准不良(不对准范围约为 30-40 °)。在正常昼夜光照下进行 7 天连续运动调制假体刺激后,观察到轴不对准的显著改善。所有动物、所有三个旋转轴、所有测试的正弦频率(0.05-5 Hz)和高加速度瞬态旋转都注意到了类似的改善。尽管随着时间的推移,VOR 不对称性变化有趋于改善的趋势,但并未达到统计学意义。先前的研究已经表明,当具有正常迷路的受试者观察到异常的视场运动时,方向可塑性会减少不对准。我们的结果表明,相反的情况也是如此:在正常观察条件下接受定向错误的前庭感觉的个体会迅速适应以恢复良好对准的 3D VOR。考虑到灵长类动物 VOR 生理学的相似性,使用 MVP 治疗双侧前庭缺陷的人类可能会出现类似的效果。

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本文引用的文献

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Restoration of 3D vestibular sensation in rhesus monkeys using a multichannel vestibular prosthesis.
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