Kiessling J, Schubert M, Archut A
Department of Otorhinolaryngology, University of Giessen, Germany.
Scand Audiol. 1996;25(3):153-60. doi: 10.3109/01050399609047998.
The introduction of programmable as well as non-linear hearing instruments has shown that audiogram-based fitting procedures are inappropriate for meeting the individual needs of hearing aid users with sensorineural loss. Particularly the present and future development of hearing instruments with advanced analog and digital signal processing requires suitable fitting procedures. In this context, we developed an adaptive fitting strategy (ScalAdapt) using category loudness scaling. In this paper the procedure is described and tested using programmable 3-channel AGC instruments. However, it can be modified for any other hearing aid design. The underlying idea is to normalize the aided loudness perception for two input levels, one around the most comfortable level (MCL) and the other just below the uncomfortable level (UCL), as anchor points in each channel by interactive fine-tuning of the fitting parameters (channel gain, compression onset, compression ratio, etc.). The benefits of ScalAdapt have been evaluated by a field test study in 17 experienced hearing aid users. The results showed that ScalAdapt provides consistently higher objective (speech recognition in noise) and subjective benefits (self-assessment inventory) than for instance NAL-based fittings.
可编程以及非线性听力仪器的引入表明,基于听力图的验配程序并不适合满足感音神经性听力损失患者的个性化需求。特别是当前和未来具有先进模拟和数字信号处理功能的听力仪器的发展,需要合适的验配程序。在此背景下,我们开发了一种使用类别响度缩放的自适应验配策略(ScalAdapt)。本文描述了该程序,并使用可编程3通道AGC仪器进行了测试。然而,它可以针对任何其他助听器设计进行修改。其基本思想是通过交互式微调拟合参数(通道增益、压缩起始点、压缩比等),将每个通道中两个输入电平的助听响度感知标准化,一个输入电平约为最舒适响度级(MCL),另一个略低于不舒适响度级(UCL),以此作为锚点。ScalAdapt的益处已通过对17名有经验的助听器用户进行的现场测试研究进行了评估。结果表明,与基于NAL的验配相比,ScalAdapt始终能提供更高的客观益处(噪声中的言语识别)和主观益处(自我评估量表)。