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Tolerable Hearing-Aid Delays: IV. Effects on Subjective Disturbance During Speech Production by Hearing-Impaired Subjects.

机译:可容忍的助听器延迟:IV。听力障碍受试者讲话过程中对主观干扰的影响。

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OBJECTIVE:: We assessed the effects of time delay in a hearing aid on subjective disturbance and reading rates while the user of the aid was speaking, using hearing-impaired subjects and real-time processing. The time delay was constant across frequency. DESIGN:: A digital signal processor was programmed as a four-channel, fast-acting, wide-dynamic-range compression hearing aid. One of four delays could be selected on the aid to produce a total delay of 13, 21, 30, or 40 msec between microphone and receiver. Twenty-five subjects, mostly with near-symmetric hearing impairment of cochlear origin, were fitted bilaterally with behind-the-ear aids connected to the processor. The aids were programmed with insertion gains prescribed by the CAMEQ loudness equalization procedure for each subject and ear. Subjects were asked to read aloud from scripts: speech production rates were measured and subjective ratings of the disturbance of the delay were obtained. Subjects required some training to recognize the effects of the delay to rate it consistently. RESULTS:: Subjective disturbance increased progressively with increasing delay and was a nonmonotonic function of low-frequency hearing loss. Subjects with mild or severe low-frequency hearing loss were generally less disturbed by the delay than those with moderate loss. Disturbance ratings tended to decrease over successive tests. Word production rates were not significantly affected by delay over the range of delays tested. CONCLUSIONS:: The results follow a pattern similar to those presented in , obtained using a simulation of hearing loss and normally hearing subjects, except for the nonmonotonic variation of disturbance with low-frequency hearing loss. We hypothesize that disturbance is maximal when the levels in the ear canal of the low-frequency components are similar for the unaided and aided sounds. A rating of 3, which is probably just acceptable, was obtained for delays ranging from 14 to 30 msec, depending on the hearing loss. Some acclimatization to the subjective disturbance occurred over a time scale of about 1 hour.
机译:目的::我们使用听力受损的受试者和实时处理技术,评估了助听器的延时对主观干扰和阅读率的影响,而助听器的用户正在讲话。时间延迟在整个频率上是恒定的。设计::数字信号处理器被编程为四通道,快速作用,宽动态范围的压缩助听器。可以通过辅助工具选择四个延迟之一,以在麦克风和接收器之间产生13、21、30或40毫秒的总延迟。 25名受试者,大多患有耳蜗来源的近对称性听力障碍,在双侧安装了与处理器连接的耳后辅助装置。使用CAMEQ响度均衡程序为每个对象和每个耳朵指定的插入增益对辅助设备进行编程。要求受试者从剧本中大声朗读:测量语音产生率,并获得对延迟干扰的主观评价。受试者需要接受一些培训,以认识到延迟的影响,以便始终如一地进行评分。结果:主观障碍随着延迟的增加而逐渐增加,并且是低频听力损失的非单调功能。一般而言,轻度或重度低频听力丧失的受试者比中度丧失的受试者受延迟的影响要小。在连续的测试中,干扰等级趋于降低。在测试的延迟范围内,延迟不会显着影响字生产率。结论:除了使用低频听力损失引起的非单调变化外,结果遵循与相似的模式,通过模拟听力损失和正常听力受试者获得。我们假设当耳道和辅助声的低频成分在耳道中的水平相似时,干扰最大。对于14到30毫秒的延迟,视听力损失而定,等级为3(可能刚刚可以接受)。在大约1小时的时间范围内,对主观干扰发生了一些适应。

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