Hülsmeier David, Buhl Mareike, Wardenga Nina, Warzybok Anna, Schädler Marc René, Kollmeier Birger
Medical Physics, CvO University Oldenburg, Oldenburg, Germany.
Cluster of Excellence Hearing4all, Oldenburg, Germany.
Int J Audiol. 2022 Mar;61(3):205-219. doi: 10.1080/14992027.2021.1929515. Epub 2021 Jun 3.
A model-based determination of the average supra-threshold ("distortion") component of hearing impairment which limits the benefit of hearing aid amplification.
Published speech recognition thresholds (SRTs) were predicted with the framework for auditory discrimination experiments (FADE), which simulates recognition processes, the speech intelligibility index (SII), which exploits frequency-dependent signal-to-noise ratios (SNR), and a modified SII with a hearing-loss-dependent band importance function (PAV). Their attenuation-component-based prediction errors were interpreted as estimates of the distortion component.
Unaided SRTs of 315 hearing-impaired ears measured with the German matrix sentence test in stationary noise.
Overall, the models showed root-mean-square errors (RMSEs) of 7 dB, but for steeply sloping hearing loss FADE and PAV were more accurate (RMSE = 9 dB) than the SII (RMSE = 23 dB). Prediction errors of FADE and PAV increased linearly with the average hearing loss. The consideration of the distortion component estimate significantly improved the accuracy of FADE's and PAV's predictions.
The supra-threshold distortion component-estimated by prediction errors of FADE and PAV-seems to increase with the average hearing loss. Accounting for a distortion component improves the model predictions and implies a need for effective compensation strategies for supra-threshold processing deficits with increasing audibility loss.
基于模型确定听力损失的平均超阈值(“失真”)成分,该成分限制了助听器放大的益处。
使用听觉辨别实验框架(FADE)预测已发表的言语识别阈值(SRT),FADE模拟识别过程;使用言语可懂度指数(SII),该指数利用频率相关的信噪比(SNR);以及使用具有听力损失相关频段重要性函数(PAV)的修正SII。将基于衰减成分的预测误差解释为失真成分的估计值。
在固定噪声中使用德语矩阵句子测试测量的315只听力受损耳朵的未助听SRT。
总体而言,这些模型的均方根误差(RMSE)为7dB,但对于陡降型听力损失,FADE和PAV比SII更准确(RMSE = 9dB)(SII的RMSE = 23dB)。FADE和PAV的预测误差随平均听力损失呈线性增加。考虑失真成分估计值显著提高了FADE和PAV预测的准确性。
由FADE和PAV的预测误差估计的超阈值失真成分似乎随平均听力损失增加。考虑失真成分可改善模型预测,并意味着随着可听度损失增加,需要针对超阈值处理缺陷采取有效的补偿策略。