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Evaluation of evoked potentials to dyadic tones after cochlear implantation

机译:人工耳蜗植入后诱发二元音诱发电位的评估

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摘要

Auditory evoked potentials are tools widely used to assess auditory cortex functions in clinical context. However, in cochlear implant users, electrophysiological measures are challenging due to implant-created artefacts in the EEG. Here, we used independent component analysis to reduce cochlear implant-related artefacts in event-related EEGs of cochlear implant users (n = 12), which allowed detailed spatio-temporal evaluation of auditory evoked potentials by means of dipole source analysis. The present study examined hemispheric asymmetries of auditory evoked potentials to musical sounds in cochlear implant users to evaluate the effect of this type of implantation on neuronal activity. In particular, implant users were presented with two dyadic tonal intervals in an active oddball design and in a passive listening condition. Principally, the results show that independent component analysis is an efficient approach that enables the study of neurophysiological mechanisms of restored auditory function in cochlear implant users. Moreover, our data indicate altered hemispheric asymmetries for dyadic tone processing in implant users compared with listeners with normal hearing (n = 12). We conclude that the evaluation of auditory evoked potentials are of major relevance to understanding auditory cortex function after cochlear implantation and could be of substantial clinical value by indicating the maturation/reorganization of the auditory system after implantation
机译:听觉诱发电位是广泛用于评估临床背景下听觉皮层功能的工具。但是,在人工耳蜗的使用者中,由于在EEG中植入物产生的假象,电生理措施具有挑战性。在这里,我们使用独立成分分析来减少人工耳蜗植入用户(n = 12)的事件相关脑电图中人工耳蜗相关的假象,从而可以通过偶极子源分析对听觉诱发电位进行详细的时空评估。本研究检查了人工植入人工耳蜗的听觉诱发电位对音乐的半球不对称性,以评估这种植入对神经元活动的影响。特别是,在主动奇数球设计和被动聆听条件下,为植入物使用者提供了两个二进音间隔。原则上,结果表明,独立成分分析是一种有效的方法,可以研究人工耳蜗植入用户恢复听觉功能的神经生理机制。此外,我们的数据表明,与正常听力的听众相比,植入用户中二音调处理的半球不对称性发生了变化(n = 12)。我们得出结论,听觉诱发电位的评估与人工耳蜗植入后听觉皮层功能的理解有关,并且通过指示植入后听觉系统的成熟/重组可能具有重要的临床价值

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