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年龄对成年人工耳蜗使用者的脉搏率辨别能力的影响。

Effect of Chronological Age on Pulse Rate Discrimination in Adult Cochlear-Implant Users.

机构信息

Department of Hearing and Speech Sciences, University of Maryland, College Park, United States.

Department of Hearing and Speech, University of Kansas Medical Center, Kansas City, United States.

出版信息

Trends Hear. 2021 Jan-Dec;25:23312165211007367. doi: 10.1177/23312165211007367.

Abstract

Cochlear-implant (CI) users rely heavily on temporal envelope cues to understand speech. Temporal processing abilities may decline with advancing age in adult CI users. This study investigated the effect of age on the ability to discriminate changes in pulse rate. Twenty CI users aged 23 to 80 years participated in a rate discrimination task. They attempted to discriminate a 35% rate increase from baseline rates of 100, 200, 300, 400, or 500 pulses per second. The stimuli were electrical pulse trains delivered to a single electrode via direct stimulation to an apical (Electrode 20), a middle (Electrode 12), or a basal location (Electrode 4). Electrically evoked compound action potential amplitude growth functions were recorded at each of those electrodes as an estimate of peripheral neural survival. Results showed that temporal pulse rate discrimination performance declined with advancing age at higher stimulation rates (e.g., 500 pulses per second) when compared with lower rates. The age-related changes in temporal pulse rate discrimination at higher stimulation rates persisted after statistical analysis to account for the estimated peripheral contributions from electrically evoked compound action potential amplitude growth functions. These results indicate the potential contributions of central factors to the limitations in temporal pulse rate discrimination ability associated with aging in CI users.

摘要

人工耳蜗(CI)使用者严重依赖时间包络线索来理解言语。随着成人 CI 用户年龄的增长,其时间处理能力可能会下降。本研究调查了年龄对辨别脉冲率变化能力的影响。20 名年龄在 23 至 80 岁之间的 CI 用户参加了一个率辨别任务。他们试图辨别比基线率 100、200、300、400 或 500 脉冲/秒增加 35%的速率。刺激是通过直接刺激到顶部(电极 20)、中部(电极 12)或底部(电极 4)的单个电极传递的电脉冲串。在这些电极处记录了电诱发复合动作电位幅度增长函数,作为周围神经存活的估计。结果表明,与较低的刺激率(例如 500 脉冲/秒)相比,随着年龄的增长,在较高的刺激率下,时间脉冲率辨别性能下降。在进行统计分析以考虑电诱发复合动作电位幅度增长函数的估计外周贡献后,在较高的刺激率下,与年龄相关的时间脉冲率辨别变化仍然存在。这些结果表明,中央因素可能对与 CI 用户年龄相关的时间脉冲率辨别能力限制有潜在贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2eb7/8150454/c81c9191fd62/10.1177_23312165211007367-fig1.jpg

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