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Sound Localization Bias and Error in Bimodal Listeners Improve Instantaneously When the Device Delay Mismatch Is Reduced

机译:当设备延迟不匹配减少时双峰听众的声音定位偏差和错误瞬时改善

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摘要

Users of a cochlear implant (CI) in one ear, who are provided with a hearing aid (HA) in the contralateral ear, so-called bimodal listeners, are typically affected by a constant and relatively large interaural time delay offset due to differences in signal processing and differences in stimulation. For HA stimulation, the cochlear travelling wave delay is added to the processing delay, while for CI stimulation, the auditory nerve fibers are stimulated directly. In case of MED-EL CI systems in combination with different HA types, the CI stimulation precedes the acoustic HA stimulation by 3 to 10 ms. A self-designed, battery-powered, portable, and programmable delay line was applied to the CI to reduce the device delay mismatch in nine bimodal listeners. We used an A-B-B-A test design and determined if sound source localization improves when the device delay mismatch is reduced by delaying the CI stimulation by the HA processing delay (τHA). Results revealed that every subject in our group of nine bimodal listeners benefited from the approach. The root-mean-square error of sound localization improved significantly from 52.6° to 37.9°. The signed bias also improved significantly from 25.2° to 10.5°, with positive values indicating a bias toward the CI. Furthermore, two other delay values (τHA –1 ms and τHA +1 ms) were applied, and with the latter value, the signed bias was further reduced in some test subjects. We conclude that sound source localization accuracy in bimodal listeners improves instantaneously and sustainably when the device delay mismatch is reduced.
机译:在一个耳朵中提供的耳蜗植入物(CI)的用户在对侧耳中提供助听器(HA),所谓的双峰听众,通常受恒定和相对较大的内部时间延迟因差异而受到影响信号处理和刺激差异。对于HA刺激,将耳蜗行波延迟添加到处理延迟中,而对于CI刺激,直接刺激听觉神经纤维。在MED-EL CI系统与不同的HA型组合的情况下,CI刺激之前的声学HA刺激以3至10ms刺激。将自动设计,电池供电,便携和可编程延迟线应用于CI,以减少九个双峰听众中的设备延迟不匹配。我们使用了A-B-B-A测试设计并确定当通过延迟通过HA处理延迟(τHA)来减少设备延迟不匹配时声源定位改善了声源定位。结果表明,我们九名双峰听众中的每个主题都受益于这种方法。声音定位的根均方误差显着提高到52.6°至37.9°。签名的偏置也显着提高了25.2°至10.5°,正值表示朝向CI的偏差。此外,施加另外两个延迟值(τha-1ms和τ+1ms),并且随后一个值,在一些测试对象中进一步降低了符号偏差。我们得出结论,当设备延迟失配减少时,双峰听众的声源定位精度瞬间和可持续地提高。

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