Clinical Feasibility and Familiarization Effects of Device Delay Mismatch Compensation in Bimodal CI/HA Users.

IF 2.6 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Trends in Hearing Pub Date : 2023-01-01 DOI:10.1177/23312165231171987
Julian Angermeier, Werner Hemmert, Stefan Zirn
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Abstract

Subjects utilizing a cochlear implant (CI) in one ear and a hearing aid (HA) on the contralateral ear suffer from mismatches in stimulation timing due to different processing latencies of both devices. This device delay mismatch leads to a temporal mismatch in auditory nerve stimulation. Compensating for this auditory nerve stimulation mismatch by compensating for the device delay mismatch can significantly improve sound source localization accuracy. One CI manufacturer has already implemented the possibility of mismatch compensation in its current fitting software. This study investigated if this fitting parameter can be readily used in clinical settings and determined the effects of familiarization to a compensated device delay mismatch over a period of 3-4 weeks. Sound localization accuracy and speech understanding in noise were measured in eleven bimodal CI/HA users, with and without a compensation of the device delay mismatch. The results showed that sound localization bias improved to 0°, implying that the localization bias towards the CI was eliminated when the device delay mismatch was compensated. The RMS error was improved by 18% with this improvement not reaching statistical significance. The effects were acute and did not further improve after 3 weeks of familiarization. For the speech tests, spatial release from masking did not improve with a compensated mismatch. The results show that this fitting parameter can be readily used by clinicians to improve sound localization ability in bimodal users. Further, our findings suggest that subjects with poor sound localization ability benefit the most from the device delay mismatch compensation.

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设备延迟不匹配补偿在双模CI/HA用户中的临床可行性和熟悉效应。
在对侧耳使用人工耳蜗(CI)和助听器(HA)的受试者由于两种设备的处理潜伏期不同,在刺激时间上存在不匹配。这种装置延迟失配导致听神经刺激的时间失配。通过补偿设备延迟失配来补偿这种听觉神经刺激失配,可以显著提高声源定位精度。一家CI制造商已经在其当前的装配软件中实现了失配补偿的可能性。本研究调查了该拟合参数是否可以在临床环境中轻松使用,并确定了在3-4周的时间内熟悉补偿装置延迟不匹配的效果。在11个双峰CI/HA用户中测量了噪音中的声音定位精度和语音理解,有无补偿设备延迟不匹配。结果表明,声音定位偏差改善到0°,这意味着补偿了器件延迟失配后,消除了对CI的定位偏差。均方根误差改善了18%,但没有达到统计学意义。效果是急性的,在熟悉3周后没有进一步改善。对于语音测试,屏蔽的空间释放不会因补偿不匹配而改善。结果表明,该拟合参数可以很容易地被临床医生用于提高双峰使用者的声音定位能力。此外,我们的研究结果表明,声音定位能力差的受试者从设备延迟不匹配补偿中获益最多。
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来源期刊
Trends in Hearing
Trends in Hearing AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGYOTORH-OTORHINOLARYNGOLOGY
CiteScore
4.50
自引率
11.10%
发文量
44
审稿时长
12 weeks
期刊介绍: Trends in Hearing is an open access journal completely dedicated to publishing original research and reviews focusing on human hearing, hearing loss, hearing aids, auditory implants, and aural rehabilitation. Under its former name, Trends in Amplification, the journal established itself as a forum for concise explorations of all areas of translational hearing research by leaders in the field. Trends in Hearing has now expanded its focus to include original research articles, with the goal of becoming the premier venue for research related to human hearing and hearing loss.
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