National Centre for Audiology, Faculty of Health Sciences, Western University, London, Ontario, Canada.
School of Communication Sciences and Disorders, Faculty of Health Sciences, Western University, London, Ontario, Canada.
J Am Acad Audiol. 2022 May;33(5):277-284. doi: 10.1055/a-1808-1275. Epub 2022 Mar 24.
Hearing aid responses can be verified with the Real-Ear Aided Response (REAR). Procedures for predicting the REAR from coupler-based verification exist, but have not incorporated corrections for venting, limiting their use and validity for vented and open fittings. A commercially available system for including venting effects in simulated real-ear measurement (S-REM) has recently been developed.
To evaluate the accuracy of a vent-corrected S-REM for predicting the REAR across test levels, for fittings with a wide range of coupling styles including modular domes.
This was a within-subject comparison study using technical measures. Retrospective file review was used to obtain previously measured REARs from 104 fittings in 52 adults and three hearing aid styles. Prospective data collection was used to re-measure each fitting at three test levels using S-REM with and without venting corrections. Comparison of differences by frequency band was performed to assess the impact of the venting correction.
The vent model reduced low-frequency error by up to 11 dB, and the effects were consistent with the expected effects of venting in hearing aid fitting: fittings with more open dome or tip styles had a larger improvement when the vent model was added. A larger sample of fittings was obtained for dome/sleeve couplings than for custom fittings.
The vent-corrected S-REM system evaluated in this study provides improved fitting accuracy for dome or sleeve-fitted hearing aids for adults and supports the use of vented S-REM for open fittings. Further studies to examine a representative sample of custom tip or mold fittings, and fittings for children are future directions.
可以使用真耳助听响应(REAR)来验证助听器的响应。已经存在从耦合器验证预测 REAR 的程序,但尚未针对通风进行校正,限制了其在通风和开放式配件中的使用和有效性。最近开发了一种可用于在模拟真耳测量(S-REM)中包含通风效果的商业系统。
评估一种经过通风校正的 S-REM 在不同测试水平下预测 REAR 的准确性,该系统适用于包括模块化耳塞在内的各种耦合样式的配件。
这是一项使用技术措施的个体内比较研究。回顾性文件审查用于从 52 名成年人和三种助听器样式的 104 个配件中获得先前测量的 REAR。前瞻性数据收集用于使用带有和不带有通风校正的 S-REM 在三个测试水平上重新测量每个配件。通过比较频带差异来评估通风校正的影响。
通风模型将低频误差降低了多达 11dB,其效果与助听器配件通风的预期效果一致:当添加通风模型时,具有更开放的耳塞或尖端样式的配件改善更大。与定制配件相比,获得了更多的耳塞/套管耦合配件。
本研究评估的经过通风校正的 S-REM 系统为成人的耳塞或套管式助听器提供了更高的拟合精度,并支持使用开放式 S-REM 进行通风配件。未来的研究方向是进一步研究具有代表性的定制尖端或模具配件以及儿童配件。