Differences in Click and Speech Auditory Brainstem Responses and Cortical Response Patterns: A Pilot Study

J. Knebel, A. Jeanvoine, Fabian Guignard, J. Vesin, C. Richard
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引用次数: 5

Abstract

Hearing loss has adverse developmental, cognitive and social impacts on individual’s lives. To improve its diagnosis and remediation outcomes, development of objective hearing methods offer new ways of optimizing care strategy. Complementary to the classical click-evoked brainstem and cortical responses, interest grows regarding the speech auditory brainstem responses, whose components, namely the onset and frequency following responses, are proposed as biomarkers of speech encoding at the brainstem level. To improve the understanding of auditory processing in the human brainstem and its effect on cortical processing, we used a multimodal set-up and recorded brainstem and cortical potentials in response to click stimuli and speech stimuli presented at different stimulation intensities in normal hearing adults. We hypothesized that even though click- and onset responses of the speechauditory brainstem responses share some similarities; their underlying mechanisms are in some point distinct. We also presumed that using a noninvasive method we could assess the generators underlying click, onset and frequency following responses and the time wise influence of brainstem encoding on cortical processing of click and speech stimuli. Results showed evidence regarding mechanisms underlying onset response and frequency following response components at the brainstem level. A direct time wise relationship between subcortical encoding and cortical encoding was revealed: cortical activity in the left cortex was related to the onset response latency at the brainstem level. These results highlight the potential use of new methods in speech processing electroencephalographic studies and provide qualitative and topographical data regarding subcortical and cortical auditory processing network.
点击和说话听觉脑干反应和皮层反应模式的差异:一项初步研究
听力损失对个人的发展、认知和社会生活都有不利的影响。客观听力方法的发展为提高其诊断和治疗效果提供了优化护理策略的新途径。作为经典的点击诱发脑干和皮层反应的补充,人们对言语听觉脑干反应的兴趣越来越大,其组成部分,即反应的开始和频率,被认为是脑干水平上言语编码的生物标志物。为了进一步了解人类脑干的听觉加工及其对皮层加工的影响,我们采用多模态设置,记录了正常听力成人在不同刺激强度下对点击刺激和语音刺激的脑干和皮层电位反应。我们假设,尽管语音脑干反应的咔哒声和开始反应有一些相似之处;它们的潜在机制在某种程度上是不同的。我们还假设使用一种非侵入性的方法,我们可以评估咔嗒声的产生机制、反应的开始和频率,以及脑干编码对皮层处理咔嗒声和语音刺激的时间影响。结果显示了脑干水平的发病反应机制和频率响应成分的证据。皮层下编码和皮层编码之间存在直接的时间关系:左皮层的活动与脑干水平的开始反应潜伏期相关。这些结果突出了语音处理脑电图研究中新方法的潜在应用,并提供了皮层下和皮层听觉处理网络的定性和地形数据。
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