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多通道双极表面微电极的耳蜗核电生理图谱。

Electrophysiological mapping of the cochlear nucleus with multi-channel bipolar surface microelectrodes.

机构信息

Department of Otolaryngology-Head and Neck Surgery, Tohoku University Graduate School of Medicine, Sendai, Japan.

出版信息

Eur Arch Otorhinolaryngol. 2013 Mar;270(3):869-74. doi: 10.1007/s00405-012-2077-5. Epub 2012 Jun 13.

Abstract

Auditory potentials in response to electrical stimulation of the cochlear nucleus were recorded in guinea pigs using two types of multi-channel surface microelectrodes with inter-electrode distance of 100 and 200 μm. Unequivocal waves of electrically evoked auditory brainstem responses (EABRs), which increased in amplitude with increasing stimulation current, were consistently observed. Electrophysiological mapping with these multichannel electrodes could clearly distinguish stimulation points showing positive EABRs from points showing undetectable EABRs, indicating that multi-channel surface microelectrodes have great potential in clinical use to determine the optimal location for the positioning of auditory brainstem implants, and may allow more precise discrimination of pitch. Further study to clarify the optimal inter-electrode distance for humans is necessary before application to physiological mapping in the human cochlear nucleus.

摘要

使用两种类型的多通道表面微电极(电极间距分别为 100μm 和 200μm),在豚鼠中记录了对耳蜗核电刺激的听觉电位。一致观察到可明确分辨的电诱发听觉脑干反应(EABR)的清晰波,其幅度随刺激电流的增加而增加。使用这些多通道电极进行的电生理学绘图可以清楚地区分显示正 EABR 的刺激点与显示不可检测 EABR 的点,表明多通道表面微电极在临床应用中有很大的潜力,可用于确定听觉脑干植入物的最佳定位位置,并可能允许更精确地分辨音高。在将其应用于人类耳蜗核的生理绘图之前,有必要进一步研究以确定人类的最佳电极间距。

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