首页> 美国卫生研究院文献>Frontiers in Neuroscience >Intracochlear Recordings of Acoustically and Electrically Evoked Potentials in Nucleus Hybrid L24 Cochlear Implant Users and Their Relationship to Speech Perception
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Intracochlear Recordings of Acoustically and Electrically Evoked Potentials in Nucleus Hybrid L24 Cochlear Implant Users and Their Relationship to Speech Perception

机译:杂合L24人工耳蜗植入用户的声和电诱发电位的耳蜗内记录及其与语音知觉的关系。

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摘要

The Hybrid cochlear implant (CI) has been developed for individuals with high frequency hearing loss who retain good low frequency hearing. Outcomes have been encouraging but individual variability is high; the health of the cochlea and the auditory nerve may be important factors driving outcomes. Electrically evoked compound action potentials (ECAPs) reflect the response of the auditory nerve to electrical stimulation while electrocochleography (ECochG) reflects the response of the cochlear hair cells and auditory nerve to acoustic stimulation. In this study both ECAPs and ECochG responses were recorded from Nucleus Hybrid L24 CI users. Correlations between these two measures of peripheral auditory function and speech perception are reported. This retrospective study includes data from 25 L24 CI users. ECAPs and ECochG responses were recorded from an intracochlear electrode using stimuli presented at or near maximum acceptable loudness levels. Speech perception was assessed using Consonant-Nucleus-Consonant (CNC) word lists presented in quiet and AzBio sentences presented at a +5 dB signal-to-noise ratio in both the combined acoustic and electric (A+E) and electric (E) alone listening modes. Acoustic gain was calculated by subtracting these two scores. Correlations between these physiologic and speech perception measures were then computed. ECAP amplitudes recorded from the most apical electrode were significantly correlated with CNC scores measured in the E alone (r = 0.56) and A+E conditions (r = 0.64), but not with performance on the AzBio test. ECochG responses recorded using the most apical electrode in the intracochlear array but evoked using a 500 Hz tone burst were not correlated with either the scores on the CNC or AzBio tests. However, ECochG amplitude was correlated with a composite metric relating the additional benefit of acoustic gain in noise relative to quiet conditions (r = 0.67). Both measures can be recorded from Hybrid L24 CI users and both ECAP and ECochG measures may result in more complete characterization of speech perception outcomes than either measure alone.
机译:混合型人工耳蜗(CI)已开发用于具有良好高频听力损失的高频听力损失患者。结果令人鼓舞,但个人差异很大。耳蜗和听神经的健康可能是驱动结果的重要因素。电诱发的复合动作电位(ECAP)反映了听神经对电刺激的响应,而脑电描记法(ECochG)反映了耳蜗毛细胞和听神经对声刺激的响应。在这项研究中,Nucleus Hybrid L24 CI用户记录了ECAP和ECochG响应。据报道这两种周围听觉功能与言语感知之间的关系。这项回顾性研究包括来自25个L24 CI用户的数据。使用在最大可接受响度水平或附近出现的刺激,从耳蜗内电极记录ECAP和ECochG响应。语音感知是使用声音和电声(A + E)和电声(E)的+5 dB信噪比,以安静的Consonant-Nucleus-Consonant(CNC)单词列表和AzBio句子呈现的单独聆听模式。通过减去这两个分数来计算声学增益。然后计算这些生理和言语感知措施之间的相关性。从最顶端的电极记录的ECAP幅度与仅在E(r = 0.56)和A + E条件(r = 0.64)下测得的CNC评分显着相关,但与AzBio测试的性能无关。使用耳蜗内阵列中最顶端的电极记录但使用500 Hz音调诱发的ECochG响应与CNC或AzBio测试的评分均无关。但是,ECochG振幅与一个复合度量相关,该复合度量涉及相对于安静条件(r = 0.67)的噪声中的声学增益的额外好处。可以从混合L24 CI用户记录这两个量度,并且与单独使用任何一个量度相比,ECAP和ECochG量度都可以导致语音感知结果的更完整表征。

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