Dincer D'Alessandro Hilal, Ballantyne Deborah, Portanova Ginevra, Greco Antonio, Mancini Patrizia
Department of Audiology, Faculty of Health Sciences, Hacettepe University, Sıhhiye, Ankara, Turkey.
Department of Sense Organs, Sapienza University of Rome, Viale dell'Università 31, Rome 00161, Italy.
Auris Nasus Larynx. 2022 Apr;49(2):202-208. doi: 10.1016/j.anl.2021.07.002. Epub 2021 Jul 23.
Limited low frequency (LF) pitch and temporal fine structure (TFS) sensitivity have been thought to contribute significantly to poor music perception in cochlear implant (CI) listeners. Thus, this study aimed to evaluate music perception in relation to LF pitch perception and temporal coding, specifically in people with bimodal stimulation as a promising approach to improve spectro-temporal sensitivity in CI listeners.
Eleven postlingually deafened bimodal listeners participated in the study (mean age=55.5 years, range 36-75 years, SD=11.7). LF pitch/TFS sensitivity was evaluated by using two recently developed tests: Harmonic Intonation (HI) and Disharmonic Intonation (DI). The music perception protocol was based on three audio files in the genres of Classical, Jazz and Soul music and a music quality questionnaire regarding four subjective aspects: Clarity, Pleasantness, Naturalness and General Quality of Sounds.
CI alone and bimodal findings showed statistically significant differences for both temporal coding and music perception. DI findings showed statistically significant correlations with music quality ratings (p<0.05).
Bimodal music quality ratings were significantly better, indicating a significant improvement in the quality of music towards being significantly more clear, more natural, more pleasant, and better quality. Similarly, bimodal HI/DI findings improved significantly, although the amount of benefit was greater for the DI task with spectral information only below 300 Hz. Significant DI correlations with music quality ratings supported the test to be more indicative of better temporal coding of LF residual hearing and its effects on music perception.
有限的低频(LF)音高和时间精细结构(TFS)敏感性被认为是导致人工耳蜗(CI)使用者音乐感知能力差的重要因素。因此,本研究旨在评估与LF音高感知和时间编码相关的音乐感知,特别是在采用双模式刺激的人群中,双模式刺激是一种有望提高CI使用者频谱-时间敏感性的方法。
11名语后聋的双模式使用者参与了本研究(平均年龄=55.5岁,范围36 - 75岁,标准差=11.7)。通过使用最近开发的两项测试:和声语调(HI)和不和谐语调(DI)来评估LF音高/TFS敏感性。音乐感知方案基于古典、爵士和灵魂音乐类型的三个音频文件以及一份关于四个主观方面的音乐质量问卷:清晰度、愉悦度、自然度和声音总体质量。
单独使用CI和双模式刺激的结果在时间编码和音乐感知方面均显示出统计学上的显著差异。DI测试结果与音乐质量评分显示出统计学上的显著相关性(p<0.05)。
双模式下的音乐质量评分显著更好,表明音乐质量有显著改善,在清晰度、自然度、愉悦度和质量方面明显更高。同样,双模式下的HI/DI测试结果显著改善,尽管对于仅低于300Hz的频谱信息,DI任务的获益更大。DI与音乐质量评分的显著相关性支持该测试更能表明LF残余听力的更好时间编码及其对音乐感知的影响。