Multimedia Systems Department, Gdansk University of Technology, Narutowicza 11/12, Gdansk, Poland.
Diagn Pathol. 2006 May 11;1:6. doi: 10.1186/1746-1596-1-6.
The earmold system of the Behind-The-Ear hearing aid is an acoustic system that modifies the spectrum of the propagated sound waves. Improper selection of the earmold system may result in deterioration of sound quality and speech intelligibility. Computer modeling methods may be useful in the process of hearing aid fitting, allowing physician to examine various earmold system configurations and choose the optimum one for the hearing aid user.
In this paper, a computer model adequate for this task is proposed. This model is based on the waveguide modeling method. The waveguide model simulates the propagation of sound waves in the system of cylindrical tubes. Frequency response of the hearing aid receiver is simulated in the model and the influence of the ear canal and the eardrum on the earmold system is taken into account. The model parameters are easily calculated from parameters of a physical hearing aid system. Transfer function of the model is calculated and frequency response plots are obtained using the Matlab system.
The frequency response plots of the earmold model were compared to the measurement plots of the corresponding physical earmold systems. The same changes in frequency responses caused by modification of length or diameter of a selected waveguide section, are observed in both measurement data of a real earmold system and in computed model responses.
Comparison of model responses obtained for various sets of parameters with measurement data proved that the proposed model accurately simulates the real earmold system and the developed model may be used to construct a computer system assisting the physician who performs earmold system fitting.
耳背式助听器的耳模系统是一个声学系统,可对传播声波的频谱进行调整。如果耳模系统选择不当,可能会导致音质和言语可懂度下降。计算机建模方法可能有助于助听器适配过程,使医生能够检查各种耳模系统配置,并为助听器使用者选择最佳的系统。
本文提出了一种适合该任务的计算机模型。该模型基于波导建模方法。波导模型模拟了圆柱形管系统中声波的传播。在模型中模拟了助听器接收器的频率响应,并考虑了耳道和鼓膜对耳模系统的影响。模型参数可以从物理助听器系统的参数中轻松计算得出。使用 Matlab 系统计算模型的传递函数并获得频率响应图。
将耳模模型的频率响应图与相应物理耳模系统的测量图进行了比较。在真实耳模系统的测量数据和计算模型响应中,都观察到了所选波导部分的长度或直径修改引起的频率响应相同的变化。
将针对各种参数集获得的模型响应与测量数据进行比较,证明了所提出的模型能够准确模拟真实的耳模系统,并且可以开发该模型以构建一个计算机系统,以协助执行耳模系统适配的医生。