首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Assessing the Electrode-Neuron Interface with the Electrically Evoked Compound Action Potential Electrode Position and Behavioral Thresholds
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Assessing the Electrode-Neuron Interface with the Electrically Evoked Compound Action Potential Electrode Position and Behavioral Thresholds

机译:用电诱发的复合动作电位电极位置和行为阈值评估电极-神经元界面

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摘要

Variability in speech perception scores among cochlear implant listeners may largely reflect the variable efficacy of implant electrodes to convey stimulus information to the auditory nerve. In the present study, three metrics were applied to assess the quality of the electrode-neuron interface of individual cochlear implant channels: the electrically evoked compound action potential (ECAP), the estimation of electrode position using computerized tomography (CT), and behavioral thresholds using focused stimulation. The primary motivation of this approach is to evaluate the ECAP as a site-specific measure of the electrode-neuron interface in the context of two peripheral factors that likely contribute to degraded perception: large electrode-to-modiolus distance and reduced neural density. Ten unilaterally implanted adults with Advanced Bionics HiRes90k devices participated. ECAPs were elicited with monopolar stimulation within a forward-masking paradigm to construct channel interaction functions (CIF), behavioral thresholds were obtained with quadrupolar (sQP) stimulation, and data from imaging provided estimates of electrode-to-modiolus distance and scalar location (scala tympani (ST), intermediate, or scala vestibuli (SV)) for each electrode. The width of the ECAP CIF was positively correlated with electrode-to-modiolus distance; both of these measures were also influenced by scalar position. The ECAP peak amplitude was negatively correlated with behavioral thresholds. Moreover, subjects with low behavioral thresholds and large ECAP amplitudes, averaged across electrodes, tended to have higher speech perception scores. These results suggest a potential clinical role for the ECAP in the objective assessment of individual cochlear implant channels, with the potential to improve speech perception outcomes.
机译:人工耳蜗植入听众之间语音感知得分的差异可能在很大程度上反映了植入电极将刺激信息传递到听神经的可变功效。在本研究中,三个指标用于评估各个人工耳蜗通道的电极-神经元界面的质量:电诱发的复合动作电位(ECAP),使用计算机断层扫描(CT)估计电极位置以及行为阈值使用集中刺激。这种方法的主要动机是在两个可能导致感知能力降低的外围因素的背景下,将ECAP评估为电极-神经元界面的特定位置度量:大的电极到竖向距离和降低的神经密度。十名使用Advanced Bionics HiRes90k设备进行单侧植入的成年人参加了该活动。通过前向屏蔽范式中的单极刺激激发ECAP,以构建通道相互作用函数(CIF),通过四极(sQP)刺激获得行为阈值,而成像数据提供了电极到矢状面距离和标量位置(标量)的估计值每个电极的鼓膜(ST),中间膜或前庭斑(SV))。 ECAP CIF的宽度与电极到血浆的距离呈正相关;这两种方法也都受标量位置的影响。 ECAP峰值幅度与行为阈值负相关。此外,在电极之间平均的行为阈值低和ECAP幅度大的受试者,往往具有较高的语音感知分数。这些结果表明,ECAP在单个耳蜗植入物通道的客观评估中具有潜在的临床作用,并有可能改善语音知觉结果。

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