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助听器的挑战与近期发展。第二部分。反馈与堵耳效应降低策略、激光外壳制造工艺及其他信号处理技术。

Challenges and recent developments in hearing aids. Part II. Feedback and occlusion effect reduction strategies, laser shell manufacturing processes, and other signal processing technologies.

作者信息

Chung King

机构信息

Department of Speech, Language and Hearing Sciences, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Trends Amplif. 2004;8(4):125-64. doi: 10.1177/108471380400800402.

Abstract

This is the second part of a review on the challenges and recent developments in hearing aids. Feedback and the occlusion effect pose great challenges in hearing aid design and usage. Yet, conventional solutions to feedback and the occlusion effect often create a dilemma: the solution to one often leads to the other. This review discusses the advanced signal processing strategies to reduce feedback and some new approaches to reduce the occlusion effect. Specifically, the causes of three types of feedback (acoustic, mechanical, and electromagnetic) are discussed. The strategies currently used to reduce acoustic feedback (i.e., adaptive feedback reduction algorithms using adaptive gain reduction, notch filtering, and phase cancellation strategies) and the design of new receivers that are built to reduce mechanical and electromagnetic feedback are explained. In addition, various new strategies (i.e., redesigned sound delivery devices and receiver-in-the-ear-canal hearing aid configuration) to reduce the occlusion effect are reviewed. Many manufacturers have recently adopted laser shell-manufacturing technologies to overcome problems associated with manufacturing custom hearing aid shells. The mechanisms of selected laser sintering and stereo lithographic apparatus and the properties of custom shells produced by these two processes are reviewed. Further, various new developments in hearing aid transducers, telecoils, channel-free amplification, open-platform programming options, rechargeable hearing aids, ear-level frequency modulated (FM) receivers, wireless Bluetooth FM systems, and wireless programming options are briefly explained and discussed. Finally, the applications of advanced hearing aid technologies to enhance other devices such as cochlear implants, hearing protectors, and cellular phones are discussed.

摘要

这是一篇关于助听器挑战与近期发展的综述的第二部分。反馈和堵耳效应在助听器设计与使用中构成了巨大挑战。然而,传统的反馈和堵耳效应解决方案常常造成一种两难局面:解决一个问题往往会引发另一个问题。本综述讨论了用于减少反馈的先进信号处理策略以及一些减少堵耳效应的新方法。具体而言,讨论了三种类型反馈(声学、机械和电磁)的成因。解释了当前用于减少声学反馈的策略(即使用自适应增益降低、陷波滤波和相位抵消策略的自适应反馈降低算法)以及为减少机械和电磁反馈而设计的新型受话器。此外,还综述了各种减少堵耳效应的新策略(即重新设计的传声装置和耳道式受话器助听器配置)。许多制造商最近采用了激光外壳制造技术来克服与定制助听器外壳制造相关的问题。综述了所选激光烧结和立体光刻设备的机制以及通过这两种工艺生产的定制外壳的特性。此外,还简要解释和讨论了助听器换能器、感应线圈、无通道放大、开放平台编程选项、可充电助听器、耳级调频(FM)接收器、无线蓝牙FM系统以及无线编程选项等方面的各种新进展。最后,讨论了先进助听器技术在增强其他设备(如人工耳蜗、听力保护器和手机)方面的应用。

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