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人体半规管模型的电前庭刺激。

The human semicircular canal model of galvanic vestibular stimulation.

机构信息

Sobell Department of Motor Neuroscience and Movement Disorders, UCL Institute of Neurology, Queen Square, London, WC1N 3BG, UK.

出版信息

Exp Brain Res. 2011 May;210(3-4):561-8. doi: 10.1007/s00221-011-2565-7. Epub 2011 Feb 3.

Abstract

A vector summation model of the action of galvanic stimuli on the semicircular canals has been shown to explain empirical balance and perceptual responses to binaural-bipolar stimuli. However, published data suggest binaural-monopolar stimuli evoke responses that are in the reverse direction of the model prediction. Here, we confirm this by measuring balance responses to binaural-monopolar stimulation as movements of the upper trunk. One explanation for the discrepancy is that the galvanic stimulus might evoke an oppositely directed balance response from the otolith organs that sums with and overrides the semicircular canal response. We tested this hypothesis by measuring sway responses across the full range of head pitch. The results showed some modulation of sway with pitch such that the maximal response occurred with the head in the primary position. However, the effect fell a long way short of that required to reverse the canal sway response. This indicates that the model is incomplete. Here, we examine alterations to the model that could explain both the bipolar and monopolar-evoked behavioural responses. An explanation was sought by remodelling the canal response with more recent data on the orientation of the individual canals. This improved matters but did not reverse the model prediction. However, the model response could be reversed by either rotating the entire labyrinth in the skull or by altering the gains of the individual canals. The most parsimonious solution was to use the more recent canal orientation data coupled with a small increase in posterior canal gain.

摘要

已建立了一个关于电刺激对半规管作用的向量和模型,该模型可解释经验性平衡和对双耳双极刺激的感知反应。然而,已发表的数据表明,双耳单极刺激会引起与模型预测相反的反应。在这里,我们通过测量上躯干的运动来确认这一点,以测量对双耳单极刺激的平衡反应。一种解释是,电刺激可能会引起耳石器官的相反方向的平衡反应,该反应与半规管反应相加并超过该反应。我们通过测量头倾斜的整个范围内的摇摆反应来测试该假设。结果表明,摇摆反应随倾斜度而有些调制,使得头部处于主要位置时出现最大反应。但是,这种效果远不及反转管摇摆反应所需的效果。这表明该模型不完整。在这里,我们检查了可以解释双极和单极诱发行为反应的模型改变。通过使用有关各个管的方向的最新数据来重新建模管的反应,寻求了解释。这改善了情况,但并未反转模型预测。但是,可以通过旋转颅骨中的整个迷路或改变各个管的增益来反转模型反应。最简单的解决方案是使用最新的管方向数据,并结合稍增加后管增益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/291e/3075401/6e9840534f89/221_2011_2565_Fig1_HTML.jpg

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