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Test-retest reliability of real ear measurements for open canal hearing aid fittings

机译:开放式耳道助听器配件真耳测量的重测信度

摘要

When fitting hearing aids with conventional earmoulds using real ear measurements (REM) it is recommended to use the modified pressure with concurrent equalization method whereby a reference microphone is used to monitor the REM loudspeaker output level. The review of the literature indicates good test-retest reliability for REM using conventional earmoulds. However, in REM using open-fit, another sound field equalization method (the modified pressure with stored equalization method) should be used to minimize any inaccurate measurements resulting from the amplified sound leakage when the open-fit hearing aid is used. In addition the sound is delivered via a generic ear tip rather than a custom made earmould. Therefore, the test-retest reliability for conventional occluded earmould REM cannot be generalized to the open-fit measures.Twenty otologically normal participants were tested to investigate short-term test-retest reliability for open-fit REM, and for conventional earmoulds at both 0o and 45o head-to-loudspeaker azimuths by performing repeated measurements at the same participant visit but after removing both the probe tube and the hearing aid and reinserting them. It was found that open-fit REM have good short-term test-retest reliability (mean 1.57 dB, SD 1.10 dB) at both azimuths and are in agreement with measured (mean 2.12 dB, SD 1.45 dB) and reported (SD ranged from 1 to 3.2 dB) conventional earmould REM test-retest variability values in the 0.25 to 4 kHz frequency range (Ringdahl A & Leijon A, 1984, The reliability of insertion gain measurements using probe microphones in the ear canal, Scandinavian Audiology, 13, 173-8). This finding is clinically significant as open fittings are widely fitted using REM to hearing impaired patients.
机译:当使用实耳测量(REM)将助听器与传统耳模配合使用时,建议使用同时均衡方法使用改进的压力,同时使用参考麦克风来监测REM扬声器的输出电平。文献综述表明,使用常规耳模对REM的重测可靠性良好。但是,在使用开放式助听器的REM中,应使用另一种声场均衡方法(使用存储的均衡方法修改压力)以最小化使用开放式助听器时因放大的声音泄漏而导致的任何不准确的测量结果。此外,声音是通过通用耳塞而不是定制的耳模传递的。因此,常规闭塞式耳模REM的重测信度不能推广到开放式测量中。对20名耳科正常参与者进行了测试,以调查开放式REM和常规耳模在0o时的短期重测信度。和45o头到扬声器的方位角,方法是在相同的参加者就诊时进行重复测量,但要同时移开探管和助听器,然后将它们重新插入。发现开放拟合REM在两个方位角上均具有良好的短期重测可靠性(均值1.57 dB,SD 1.10 dB),并与实测值(均值2.12 dB,SD 1.45 dB)一致,并报告了(SD范围为1至3.2 dB)在0.25至4 kHz频率范围内的常规耳模REM重测变异性值(Ringdahl A和Leijon A,1984,使用耳道中的传声器测量插入增益的可靠性,斯堪的纳维亚听力学,13,173) -8)。这一发现在临床上具有重要意义,因为使用REM将开放式接头广泛安装到听力受损的患者中。

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    Alaqrabawi Wala;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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