Optimization of Sound Coding Strategies to Make Singing Music More Accessible for Cochlear Implant Users.

IF 2.6 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Sina Tahmasebi, Manuel Segovia-Martinez, Waldo Nogueira
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Abstract

Cochlear implants (CIs) are implantable medical devices that can partially restore hearing to people suffering from profound sensorineural hearing loss. While these devices provide good speech understanding in quiet, many CI users face difficulties when listening to music. Reasons include poor spatial specificity of electric stimulation, limited transmission of spectral and temporal fine structure of acoustic signals, and restrictions in the dynamic range that can be conveyed via electric stimulation of the auditory nerve. The coding strategies currently used in CIs are typically designed for speech rather than music. This work investigates the optimization of CI coding strategies to make singing music more accessible to CI users. The aim is to reduce the spectral complexity of music by selecting fewer bands for stimulation, attenuating the background instruments by strengthening a noise reduction algorithm, and optimizing the electric dynamic range through a back-end compressor. The optimizations were evaluated through both objective and perceptual measures of speech understanding and melody identification of singing voice with and without background instruments, as well as music appreciation questionnaires. Consistent with the objective measures, results gathered from the perceptual evaluations indicated that reducing the number of selected bands and optimizing the electric dynamic range significantly improved speech understanding in music. Moreover, results obtained from questionnaires show that the new music back-end compressor significantly improved music enjoyment. These results have potential as a new CI program for improved singing music perception.

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优化声音编码策略,使人工耳蜗使用者更容易获得歌唱音乐。
人工耳蜗是一种植入式医疗设备,可以部分恢复重度感音神经性听力损失患者的听力。虽然这些设备在安静的环境下可以很好地理解语音,但许多CI用户在听音乐时却会遇到困难。原因包括电刺激的空间特异性较差,声信号的频谱和时间精细结构传输受限,听神经电刺激所能传递的动态范围受限。目前在ci中使用的编码策略通常是为语音而不是音乐设计的。这项工作研究了CI编码策略的优化,以使CI用户更容易接受歌唱音乐。其目的是通过选择更少的刺激频带来降低音乐的频谱复杂性,通过增强降噪算法来衰减背景乐器,并通过后端压缩器优化电动态范围。通过有背景乐器和没有背景乐器的语音理解和旋律识别的客观和感性测量以及音乐欣赏问卷来评估优化效果。与客观测量结果一致,从感知评估中收集的结果表明,减少选择频带的数量和优化电动态范围显着提高了音乐中的语音理解。此外,问卷调查结果显示,新的音乐后端压缩机显著提高音乐享受。这些结果有可能作为一种新的CI程序来改善歌唱音乐感知。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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