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降低设备延迟不匹配可改善双耳植入/助听器使用者的声音定位。

Reducing the Device Delay Mismatch Can Improve Sound Localization in Bimodal Cochlear Implant/Hearing-Aid Users.

机构信息

1 Department of Electrical Engineering, Medical Engineering and Computer Science, University of Applied Sciences Offenburg, Germany.

2 Department of Otorhinolaryngology-Head and Neck Surgery, Medical Center, Faculty of Medicine-University of Freiburg, Germany.

出版信息

Trends Hear. 2019 Jan-Dec;23:2331216519843876. doi: 10.1177/2331216519843876.

Abstract

In users of a cochlear implant (CI) together with a contralateral hearing aid (HA), so-called bimodal listeners, differences in processing latencies between digital HA and CI up to 9 ms constantly superimpose interaural time differences. In the present study, the effect of this device delay mismatch on sound localization accuracy was investigated. For this purpose, localization accuracy in the frontal horizontal plane was measured with the original and minimized device delay mismatch. The reduction was achieved by delaying the CI stimulation according to the delay of the individually worn HA. For this, a portable, programmable, battery-powered delay line based on a ring buffer running on a microcontroller was designed and assembled. After an acclimatization period to the delayed CI stimulation of 1 hr, the nine bimodal study participants showed a highly significant improvement in localization accuracy of 11.6% compared with the everyday situation without the delay line ( p < .01). Concluding, delaying CI stimulation to minimize the device delay mismatch seems to be a promising method to increase sound localization accuracy in bimodal listeners.

摘要

在同时使用人工耳蜗(CI)和对侧助听器(HA)的用户中,即所谓的双模式聆听者,数字 HA 和 CI 之间的处理潜伏期差异高达 9ms,不断叠加了耳间时间差。在本研究中,研究了这种设备延迟不匹配对声音定位准确性的影响。为此,使用原始和最小化设备延迟不匹配来测量正面水平平面的定位准确性。通过根据个人佩戴的 HA 的延迟来延迟 CI 刺激来实现减少。为此,设计并组装了一个基于微控制器上运行的环形缓冲区的便携式、可编程、电池供电的延迟线。在适应 CI 刺激延迟 1 小时后,9 名双模式研究参与者的定位准确性显著提高了 11.6%,与没有延迟线的日常情况相比(p<0.01)。总之,延迟 CI 刺激以最小化设备延迟不匹配似乎是一种很有前途的方法,可以提高双模式聆听者的声音定位准确性。

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