Katharina Suntinger, Adrian Dalbert, Lukas Prochazka, Milena Tegelkamp, Peter Kronen, Karina Klein, Christof Röösli, Alexander Huber, Flurin Pfiffner
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However, normative data for BAERs in sheep, which represent an adequate large animal model for translational and basic otological research, are lacking. <b>Objective:</b> The aim of this study was to assess the function of the ovine auditory nervous system by determining normative values for the BAER and to compare sheep with human BAER data. <b>Methods:</b> In this retrospective study, BAER data for click stimuli at a range of sound pressure levels (SPLs) were analyzed. A series of 15 samples from six sheep with a mean age of 41.8 months was included. <b>Results:</b> The mean BAER threshold was 45.3 dB SPL. At 100 dB SPL, the mean (±standard deviation, SD) latency of wave V was 4.35 (±0.18) ms, that of wave III was 2.44 (±0.15) ms, and that of wave I was 0.88 (±0.13) ms. At 100 dB SPL, the mean interpeak latency of waves I-III was 1.56 (±0.18) ms, that of waves III-V was 1.91 (±0.16) ms, and that of waves I-V was 3.47 (±0.20) ms. The mean amplitudes at 100 dB SPL were 0.04 (±0.03) µV for wave I, 0.50 (±0.24) µV for wave III, and 0.40 (±0.25) µV for wave V. <b>Conclusions:</b> The normative values for sheep BAERs were reproducible and similar to those of humans. 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引用次数: 0
摘要
背景:脑干听觉诱发反应(BAER)是一种从听神经到脑干的神经活动的电生理测量方法。BAER用于诊断听觉通路异常以及人类和动物的神经生理学研究。然而,绵羊BAERs的规范数据缺乏,而绵羊BAERs代表了转化和基础耳科研究的足够大的动物模型。目的:本研究的目的是通过确定BAER的标准值来评估绵羊听觉神经系统的功能,并将绵羊与人类的BAER数据进行比较。方法:回顾性分析不同声压级(SPLs)下点击刺激的BAER数据。从6只平均年龄为41.8个月的绵羊中抽取了15个样本。结果:平均BAER阈值为45.3 dB SPL。在100分贝,意味着(±标准差,SD)延迟波V 4.35(±0.18)女士,第三波是2.44(±0.15)女士,这波我是0.88(±0.13)女士在100分贝,波的平均interpeak延迟》1.56(±0.18)女士,海浪的III-V 1.91(±0.16)女士,这波的电流-电压是3.47(±0.20)平均振幅女士在100分贝0.04(±0.03)µV波我,0.50(±0.24)µV波三世和0.40(±0.25)µV波V .结论:绵羊BAERs的正常值具有可重复性,且与人的正常值相似。规范的BAER值进一步支持羊作为耳科研究的适当动物模型。
Normative Values of Brainstem Auditory-Evoked Responses in Sheep.
Background: The brainstem auditory-evoked response (BAER) is an established electrophysiological measure of neural activity from the auditory nerve up to the brain stem. The BAER is used to diagnose abnormalities in auditory pathways and in neurophysiological human and animal research. However, normative data for BAERs in sheep, which represent an adequate large animal model for translational and basic otological research, are lacking. Objective: The aim of this study was to assess the function of the ovine auditory nervous system by determining normative values for the BAER and to compare sheep with human BAER data. Methods: In this retrospective study, BAER data for click stimuli at a range of sound pressure levels (SPLs) were analyzed. A series of 15 samples from six sheep with a mean age of 41.8 months was included. Results: The mean BAER threshold was 45.3 dB SPL. At 100 dB SPL, the mean (±standard deviation, SD) latency of wave V was 4.35 (±0.18) ms, that of wave III was 2.44 (±0.15) ms, and that of wave I was 0.88 (±0.13) ms. At 100 dB SPL, the mean interpeak latency of waves I-III was 1.56 (±0.18) ms, that of waves III-V was 1.91 (±0.16) ms, and that of waves I-V was 3.47 (±0.20) ms. The mean amplitudes at 100 dB SPL were 0.04 (±0.03) µV for wave I, 0.50 (±0.24) µV for wave III, and 0.40 (±0.25) µV for wave V. Conclusions: The normative values for sheep BAERs were reproducible and similar to those of humans. The normative BAER values further support sheep as an adequate animal model for otological research.
期刊介绍:
Brain Sciences (ISSN 2076-3425) is a peer-reviewed scientific journal that publishes original articles, critical reviews, research notes and short communications in the areas of cognitive neuroscience, developmental neuroscience, molecular and cellular neuroscience, neural engineering, neuroimaging, neurolinguistics, neuropathy, systems neuroscience, and theoretical and computational neuroscience. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.