短期过度刺激影响耳蜗植入动物模型的外周兴奋性,但不影响中枢兴奋性。

IF 1.4 Q2 OTORHINOLARYNGOLOGY
Susanne Schwitzer, Moritz Gröschel, Horst Hessel, Arne Ernst, Dietmar Basta
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引用次数: 0

摘要

目的:电流上限(c级)有时会随着时间的推移而急剧增加,因为这种手术可以增强语音感知。需要澄清的是,剩余的外周和中枢听觉通路是否能耐受更大的电刺激。材料与方法:将动物电极阵列植入机械致聋豚鼠体内。将c水平调整为平均约10 CL(“LOS”组)、40 CL(“MOS”组)或60 CL(“HOS”组),高于电极特异性电诱发复合动作电位(eCAP)阈值。在标准化的听觉环境中,通过声音处理器进行刺激。植入和未受刺激的动物作为对照。结果:在基础电极刺激8小时后,“HOS”组观察到显著的eCAP阈值移位。电诱发的听觉脑干阈值在所有刺激组中都是稳定的。在“HOS”组中,eCAP-和eABR阈值移位的比值显著增加。结论:即使短时间的过度刺激也会降低外周听觉结构的兴奋性,而不会降低中枢听觉结构的兴奋性。螺旋神经节神经元与下丘神经元兴奋性关系的改变似乎表明过度刺激。该结果对于安全的ci处理器安装非常重要,特别是在儿童或不合规的患者中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Short-term overstimulation affects peripheral but not central excitability in an animal model of cochlear implantation.

Objective: Upper current limits (C-levels) are sometimes extremely increased over time since this procedure can enhance speech perception. It should be clarified if a larger amount of electrical stimulation is tolerated by the remaining peripheral and central auditory pathway.Materials and Methods: An animal electrode array was inserted in mechanically deafened guinea pigs. C-levels were adjusted to a mean of approximately 10 CL ('LOS' group), 40 CL ('MOS' group) or 60 CL ('HOS' group) above the electrode specific electrically evoked compound action potential (eCAP) threshold. The stimulation was performed via a sound processor in standardized auditory environment. Implanted and not stimulated animals served as controls.Results: A significant eCAP threshold shift was observed in the 'HOS'-group aftereight hours of stimulation at basal electrodes. Electrically evoked auditory brainstem thresholds were stable over time in all stimulation groups. The ratio between eCAP- and eABR threshold shifts was significantly enhanced in the 'HOS'- group.Conclusion: Even short-time overstimulation reduces the excitability of peripheral but not central auditory structures. The changed relationship between the excitability of spiral ganglion neurons and inferior colliculus neurons seems to indicate an overstimulation. The results are of utmost importance for a safe CI-processor fitting especially in children or non-compliant patients.

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来源期刊
COCHLEAR IMPLANTS INTERNATIONAL
COCHLEAR IMPLANTS INTERNATIONAL Medicine-Otorhinolaryngology
CiteScore
3.10
自引率
0.00%
发文量
29
期刊介绍: Cochlear Implants International was founded as an interdisciplinary, peer-reviewed journal in response to the growing number of publications in the field of cochlear implants. It was designed to meet a need to include scientific contributions from all the disciplines that are represented in cochlear implant teams: audiology, medicine and surgery, speech therapy and speech pathology, psychology, hearing therapy, radiology, pathology, engineering and acoustics, teaching, and communication. The aim was to found a truly interdisciplinary journal, representing the full breadth of the field of cochlear implantation.
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