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Music and Hearing Aids—An Introduction
Author(s) -
Marshall Chasin
Publication year - 2012
Publication title -
trends in amplification
Language(s) - English
Resource type - Journals
eISSN - 1940-5588
pISSN - 1084-7138
DOI - 10.1177/1084713812468512
Subject(s) - high fidelity , fidelity , software , computer science , distortion (music) , speech recognition , crest factor , signal (programming language) , digital signal processing , audiology , front and back ends , hearing aid , acoustics , telecommunications , medicine , amplifier , computer hardware , physics , bandwidth (computing) , operating system , programming language
Modern digital hearing aids have provided improved fidelity over those of earlier decades for speech. The same however cannot be said for music. Most modern hearing aids have a limitation of their “front end,” which comprises the analog-to-digital (A/D) converter. For a number of reasons, the spectral nature of music as an input to a hearing aid is beyond the optimal operating conditions of the “front end” components. Amplified music tends to be of rather poor fidelity. Once the music signal is distorted, no amount of software manipulation that occurs later in the circuitry can improve things. The solution is not a software issue. Some characteristics of music that make it difficult to be transduced without significant distortion include an increased sound level relative to that of speech, and the crest factor- the difference in dB between the instantaneous peak of a signal and its RMS value. Clinical strategies and technical innovations have helped to improve the fidelity of amplified music and these include a reduction of the level of the input that is presented to the A/D converter.

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