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Use of forward pressure level to minimize the influence of acoustic standing waves during probe-microphone hearing-aid verification

机译:在探管麦克风助听器验证过程中使用前向压力水平来最小化声驻波的影响

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摘要

Probe-microphone measurements are a reliable method of verifying hearing-aid sound pressure level (SPL) in the ear canal for frequencies between 0.25 and 4 kHz. However, standing waves in the ear canal reduce the accuracy of these measurements above 4 kHz. Recent data suggest that speech information at frequencies up to 10 kHz may enhance speech perception, particularly for children. Incident and reflected components of a stimulus in the ear canal can be separated, allowing the use of forward (incident) pressure as a measure of stimulus level. Two experiments were conducted to determine if hearing-aid output in forward pressure provides valid estimates of in-situ sound level in the ear canal. In experiment 1, SPL measurements were obtained at the tympanic membrane and the medial end of an earmold in ten adults. While within-subject test-retest reliability was acceptable, measures near the tympanic membrane reduced the influence of standing waves for two of the ten participants. In experiment 2, forward pressure measurements were found to be unaffected by standing waves in the ear canal for frequencies up to 10 kHz. Implications for clinical assessment of amplification are discussed.
机译:探头麦克风测量是验证0.25和4 kHz之间频率的耳道中助听器声压级(SPL)的可靠方法。但是,耳道中的驻波会降低4 kHz以上这些测量的准确性。最新数据表明,频率高达10 kHz的语音信息可能会增强语音感知能力,特别是对于儿童。耳道刺激的入射和反射成分可以分开,从而允许使用正向(入射)压力作为刺激水平的量度。进行了两个实验,以确定前向压力下的助听器输出是否能提供对耳道内原位声压的有效估计。在实验1中,在十名成年人中,在鼓膜和耳模的内侧末端获得了SPL测量值。虽然受试者内部的再测信度是可以接受的,但是鼓膜附近的措施对十名参与者中的两名参与者减小了驻波的影响。在实验2中,发现对于高达10 kHz的频率,前向压力测量不受耳道驻波的影响。讨论了对扩增的临床评估的意义。

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