首页> 外文期刊>Journal of the American Academy of Audiology >Accuracy and reliability of a real-ear-to-coupler difference measurement procedure implemented within a behind-the-ear hearing aid
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Accuracy and reliability of a real-ear-to-coupler difference measurement procedure implemented within a behind-the-ear hearing aid

机译:在耳后助听器中实施的实际耳对耦合器差异测量程序的准确性和可靠性

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Background: Measurement of the real ear response of a fitted hearing aid allows matching of the frequency response to prescriptive targets, as well as comparison of the response to both threshold and loudness discomfort level (LDL). These processes are recommended procedures for hearing aid fittings. The real ear aided response (REAR) is often predicted based on the coupler response of the device, the real-ear-to-coupler difference (RECD), and the microphone location effect (MLE). Individualized measurement of the RECD tends to increase the accuracy of this prediction. A commercial hearing aid has been developed that measures the individual RECD and incorporates the data into the software-assisted fitting process. Purpose: This study evaluated the test-retest reliability and predictive validity of this particular method for measuring the RECD. Research Design: A repeated measures design was used to evaluate differences between subsequent measures of the RECD in the same ear, and prediction differences associated with using the RECD (and other information) to predict the REAR. Study Sample: Fifteen ears, on a convenience sample of ten adults (45-86 yr) and five children (6-15 yr) were tested. All participants were hearing aid users. Data Collection and Analysis: Predicted and measured REARs were collected using normal clinical procedures, on an Audioscan Verifit VF-1 for two test signals/levels. Reliability, mean differences between predicted and measured REARs, and 95% confidence intervals of the prediction accuracy are reported. Results: The RECD procedure had test-retest reliability within 2.5 dB for 14 out of 15 ears between 500 and 4000 Hz, and had predictive accuracy within 5 dB between 500 and 4000 Hz for 14 out of 15 ears. However, errors associated with earhook misalignment were discovered. Also, the RECD values measured using this hearing-aid-specific procedure differ somewhat from the normative data available from insert earphone RECDs. Conclusions: This procedure, when measured according to recommendations, provides a reasonably accurate prediction of the REAR. Functionally, this procedure does not replace the range of measures offered by modern real ear measurement systems. However, given the inaccuracy of software-assisted fittings without a measure of individual ear canal acoustics, use of this procedure may have the potential to improve the accuracy of fittings versus fittings completed without real ear measurement.
机译:背景:测量佩戴的助听器的真实耳部反应可以使频率响应与指定目标相匹配,并且可以将对阈值和响度不适水平(LDL)的响应进行比较。这些过程是助听器配件的推荐步骤。通常基于设备的耦合器响应,实际耳对耦合器差(RECD)和麦克风定位效果(MLE)来预测真实的耳助响应(REAR)。 RECD的个性化测量往往会提高此预测的准确性。已经开发了一种商用助听器,可以测量单个RECD,并将数据合并到软件辅助的拟合过程中。目的:本研究评估了这种用于测量RECD的特定方法的重测信度和预测有效性。研究设计:重复测量设计用于评估同一只耳朵的RECD后续测量之间的差异,以及与使用RECD(和其他信息)预测REAR相关的预测差异。研究样本:在方便的样本上测试了15个耳朵,其中有10个成年人(45-86岁)和5个孩子(6-15岁)。所有参与者均为助听器用户。数据收集和分析:使用Audioscan Verifit VF-1上的常规临床程序收集两个测试信号/水平的预测和测量的REAR。报告了可靠性,预测的和测量的REAR之间的平均差异以及预测准确性的95%置信区间。结果:RECD程序对500和4000 Hz之间的15个耳朵中的14个具有2.5 dB的重测可靠性,对于15个耳朵中的14个耳朵在500和4000 Hz之间的5 dB内具有预测准确度。但是,发现与耳钩未对准相关的错误。而且,使用此助听器特定程序测量的RECD值与插入式耳机RECD可获得的标准数据有些不同。结论:根据建议进行测量时,该程序可为REAR提供合理准确的预测。从功能上讲,此程序不能替代现代真实耳朵测量系统提供的测量范围。但是,由于软件辅助的配件在不测量单个耳道声学效果的情况下不准确,因此与未进行实际耳部测量而完成的配件相比,使用此程序可能会提高配件的准确性。

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