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Electrophysiological Measurements of Peripheral Vestibular Function—A Review of Electrovestibulography

机译:外周前庭功能的电生理测量—电心动图学综述

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Electrocochleography (EcochG), incorporating the Cochlear Microphonic (CM), the Summating Potential (SP), and the cochlear Compound Action Potential (CAP), has been used to study cochlear function in humans and experimental animals since the 1930s, providing a simple objective tool to assess both hair cell (HC) and nerve sensitivity. The vestibular equivalent of ECochG, termed here Electrovestibulography (EVestG), incorporates responses of the vestibular HCs and nerve. Few research groups have utilized EVestG to study vestibular function. Arguably, this is because stimulating the cochlea in isolation with sound is a trivial matter, whereas stimulating the vestibular system in isolation requires significantly more technical effort. That is, the vestibular system is sensitive to both high-level sound and bone-conducted vibrations, but so is the cochlea, and gross electrical responses of the inner ear to such stimuli can be difficult to interpret. Fortunately, several simple techniques can be employed to isolate vestibular electrical responses. Here, we review the literature underpinning gross vestibular nerve and HC responses, and we discuss the nomenclature used in this field. We also discuss techniques for recording EVestG in experimental animals and humans and highlight how EVestG is furthering our understanding of the vestibular system.
机译:自1930年代以来,结合了耳蜗微音(CM),求和电位(SP)和耳蜗复合动作电位(CAP)的脑电图(EcochG)被用于研究人类和实验动物的耳蜗功能,提供了一个简单的目标评估毛细胞(HC)和神经敏感性的工具。 ECochG的前庭等效物,在这里称为心电图(EVestG),结合了前庭HC和神经的反应。很少有研究小组利用EVestG来研究前庭功能。可以说,这是因为用声音孤立地刺激耳蜗是一件小事,而孤立地刺激前庭系统需要大量的技术努力。也就是说,前庭系统对高水平的声音和骨传导的振动都敏感,但是耳蜗也是如此,内耳对这种刺激的总电反应可能难以解释。幸运的是,可以采用几种简单的技术来隔离前庭电反应。在这里,我们回顾了支持大前庭神经和HC反应的文献,并讨论了该领域中使用的术语。我们还将讨论在实验动物和人类中记录EVestG的技术,并重点介绍EVestG如何加深我们对前庭系统的了解。

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