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人工耳蜗使用者在各项任务中的发声控制存在相关性。

Cochlear Implant Users' Vocal Control CorrelatesAcross Tasks.

机构信息

University of Illinois at Urbana-Champaign, Department of Speech and Hearing Science, Champaign, Illinois.

University of Illinois at Chicago, Department of Otolaryngology-Head and Neck Surgery, Chicago, Illinois; University of Illinois at Urbana-Champaign, Department of Speech and Hearing Science, Champaign, Illinois.

出版信息

J Voice. 2020 May;34(3):490.e7-490.e10. doi: 10.1016/j.jvoice.2018.10.008. Epub 2018 Nov 14.

Abstract

Cochlear implants (CIs) provide access to auditory information that can affect vocal control. For example, previous research shows that, when producing a sustained vowel, CI users will alter the pitch of their voice when the feedback of their own voice is perceived to shift. Although these results can be informative as to how perception and production are linked for CI users, the artificial nature of the task raises questions as to the applicability of the results to real-world vocal productions. To examine how vocal control, when producing sustained vowels, relates to vocal control for more ecologically valid tasks, 10 CI users' vocal control was measured across two tasks: (1) sustained vowel production, and (2) singing. The results found that vocal control, as measured by the variability of the participants' fundamental frequency, was significantly correlated when producing sustained vowels and when singing, although variability was significantly greater when singing. This suggests that, despite the artificial nature of sustained vowel production, vocal control on such tasks is related to vocal control for more ecologically valid tasks. However, the results also suggest that vocal control may be overestimated with sustained vowel production tasks.

摘要

人工耳蜗(CIs)提供听觉信息,这可能会影响发声控制。例如,先前的研究表明,当 CI 用户发出持续元音时,当他们感觉到自己的声音反馈发生变化时,他们会改变声音的音高。尽管这些结果可以说明 CI 用户的感知和产生是如何联系在一起的,但由于任务的人为性质,这些结果对于真实的发声生产可能并不适用。为了研究在发出持续元音时的发声控制与更符合实际的任务的发声控制之间的关系,10 名 CI 用户的发声控制在两个任务中进行了测量:(1)持续元音的产生,以及(2)唱歌。结果发现,以参与者基频的变异性为衡量标准,在发出持续元音和唱歌时,发声控制显著相关,尽管唱歌时的变异性明显更大。这表明,尽管持续元音产生的任务具有人为性质,但此类任务中的发声控制与更符合实际的任务中的发声控制有关。然而,结果还表明,在持续元音产生任务中,发声控制可能被高估。

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