首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Channel Interaction and Current Level Affect Across-Electrode Integration of Interaural Time Differences in Bilateral Cochlear-Implant Listeners
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Channel Interaction and Current Level Affect Across-Electrode Integration of Interaural Time Differences in Bilateral Cochlear-Implant Listeners

机译:通道相互作用和电流水平影响双侧耳蜗植入听众耳间时间差异的跨电极整合。

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摘要

Sensitivity to interaural time differences (ITDs) is important for sound localization. Normal-hearing listeners benefit from across-frequency processing, as seen with improved ITD thresholds when consistent ITD cues are presented over a range of frequency channels compared with when ITD information is only presented in a single frequency channel. This study aimed to clarify whether cochlear-implant (CI) listeners can make use of similar processing when being stimulated with multiple interaural electrode pairs transmitting consistent ITD information. ITD thresholds for unmodulated, 100-pulse-per-second pulse trains were measured in seven bilateral CI listeners using research interfaces. Consistent ITDs were presented at either one or two electrode pairs at different current levels, allowing for comparisons at either constant level per component electrode or equal overall loudness. Different tonotopic distances between the pairs were tested in order to clarify the potential influence of channel interaction. Comparison of ITD thresholds between double pairs and the respective single pairs revealed systematic effects of tonotopic separation and current level. At constant levels, performance with double-pair stimulation improved compared with single-pair stimulation but only for large tonotopic separation. Comparisons at equal overall loudness revealed no benefit from presenting ITD information at two electrode pairs for any tonotopic spacing. Irrespective of electrode-pair configuration, ITD sensitivity improved with increasing current level. Hence, the improved ITD sensitivity for double pairs found for a large tonotopic separation and constant current levels seems to be due to increased loudness. The overall data suggest that CI listeners can benefit from combining consistent ITD information across multiple electrodes, provided sufficient stimulus levels and that stimulating electrode pairs are widely spaced.
机译:对耳间时差(ITD)的敏感度对于声音定位很重要。正常听力的听众会受益于跨频处理,与ITD信息仅在单个频道中呈现相比,当在一系列频道上呈现一致的ITD提示时,ITD阈值得到了改善。这项研究的目的是弄清楚当被多个传输一致的ITD信息的耳间电极对刺激时,人工耳蜗(CI)听众是否可以使用类似的处理方法。使用研究接口在七个双边CI听众中测量了未调制的每秒100脉冲的脉冲序列的ITD阈值。在一对或两个电极对上以不同的电流水平呈现出一致的ITD,从而允许以每个组件电极的恒定水平或相等的整体响度进行比较。测试了两对之间不同的tonotopic距离,以阐明通道交互作用的潜在影响。双对和相应单对之间ITD阈值的比较揭示了色调分离和电流水平的系统影响。在恒定的水平下,双对刺激的性能与单对刺激相比有所改善,但仅适用于较大的Tonotopic分离。在总体响度相等的情况下进行的比较显示,对于任何主题空间,在两对电极上均提供ITD信息无益。无论电极对配置如何,ITD灵敏度都会随着电流水平的提高而提高。因此,对于较大的断层分离和恒定电流水平的双对,ITD灵敏度的提高似乎是由于响度的提高。总体数据表明,只要有足够的刺激水平并且刺激电极对之间的间隔较远,CI听众可以受益于跨多个电极组合一致的ITD信息。

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