The Benefits of Residual Hair Cell Function for Speech and Music Perception in Pediatric Bimodal Cochlear Implant Listeners

Author:

Cheng Xiaoting12,Liu Yangwenyi12,Wang Bing12,Yuan Yasheng12,Galvin John J.3,Fu Qian-Jie4ORCID,Shu Yilai12ORCID,Chen Bing12ORCID

Affiliation:

1. Department of Otology and Skull Base Surgery, Eye and Ear, Nose, Throat Hospital of Fudan University, Shanghai, China

2. Key Laboratory of Hearing Medicine, National Health and Family Planning Commission, Shanghai, China

3. House Ear Institute, Los Angeles, CA, USA

4. Department of Head and Neck Surgery, David Geffen School of Medicine, UCLA, Los Angeles, CA, USA

Abstract

Objective. The aim of this study was to investigate the benefits of residual hair cell function for speech and music perception in bimodal pediatric Mandarin-speaking cochlear implant (CI) listeners. Design. Speech and music performance was measured in 35 Mandarin-speaking pediatric CI users for unilateral (CI-only) and bimodal listening. Mandarin speech perception was measured for vowels, consonants, lexical tones, and sentences in quiet. Music perception was measured for melodic contour identification (MCI). Results. Combined electric and acoustic hearing significantly improved MCI and Mandarin tone recognition performance, relative to CI-only performance. For MCI, performance was significantly better with bimodal listening for all semitone spacing conditions (p<0.05 in all cases). For tone recognition, bimodal performance was significantly better only for tone 2 (rising; p<0.05). There were no significant differences between CI-only and CI + HA for vowel, consonant, or sentence recognition. Conclusions. The results suggest that combined electric and acoustic hearing can significantly improve perception of music and Mandarin tones in pediatric Mandarin-speaking CI patients. Music and lexical tone perception depends strongly on pitch perception, and the contralateral acoustic hearing coming from residual hair cell function provided pitch cues that are generally not well preserved in electric hearing.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Neurology (clinical),Neurology

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