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人工耳蜗植入者在电声刺激下使用动态姿势描记法对平衡功能的研究。

Investigation of Balance Function Using Dynamic Posturography under Electrical-Acoustic Stimulation in Cochlear Implant Recipients.

作者信息

Schwab B, Durisin M, Kontorinis G

机构信息

Department of Otolaryngology, Medical University of Hannover, 30625 Hannover, Germany.

出版信息

Int J Otolaryngol. 2010;2010:978594. doi: 10.1155/2010/978594. Epub 2010 Jun 28.

Abstract

Introduction. The purpose of the present study is to investigate the effect of electrical-acoustic stimulation on vestibular function in CI patients by using the EquiTest and to help answer the question of whether electrically stimulating the inner ear using a cochlear implant influences the balance system in any way. Material and Methods. A test population (n = 50) was selected at random from among the cochlear implant recipients. Dynamic posturography (using the EquiTest) was performed with the device switched off an switched on. Results. In summary, it can be said that an activated cochlear implant affects the function of the vestibular system and may, to an extent, even lead to a stabilization of balance function under the static conditions of dynamic posturography, but nevertheless also to a significant destabilization. Significant improvements in vestibular function were seen mainly in equilibrium scores under conditions 4 and 5, the composite equilibrium score, and the vestibular components as revealed by sensory analysis. Conclusions. Only under the static conditions are significantly poorer scores achieved when stimulation is applied. It may be that the explanation for any symptoms of dizziness lies precisely in the fact that they occur in supposedly noncritical situations, since, when the cochlear implant makes increased demands on the balance system, induced disturbances can be centrally suppressed.

摘要

引言。本研究的目的是通过使用EquiTest来研究电声刺激对人工耳蜗植入(CI)患者前庭功能的影响,并帮助回答使用人工耳蜗对内耳进行电刺激是否会以任何方式影响平衡系统这一问题。材料与方法。从人工耳蜗植入受者中随机选择一个测试群体(n = 50)。在设备关闭和开启的情况下进行动态姿势描记法(使用EquiTest)。结果。总之,可以说激活的人工耳蜗会影响前庭系统的功能,并且在动态姿势描记法的静态条件下,甚至可能在一定程度上导致平衡功能的稳定,但同时也会导致明显的失衡。前庭功能的显著改善主要见于条件4和5下的平衡得分、综合平衡得分以及感觉分析所显示的前庭成分。结论。仅在静态条件下施加刺激时得分会显著降低。头晕症状的任何解释可能恰恰在于它们发生在所谓的非关键情况下,因为当人工耳蜗对平衡系统提出更高要求时,诱发的干扰可以在中枢得到抑制。

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