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Hear Res ; 263(1-2): 85-92, 2010 May.
Article in English | MEDLINE | ID: mdl-19900526

ABSTRACT

Auditory thresholds with standardized clinical procedures are obtained over a much narrower frequency range by bone conduction than by air conduction. As a result, diagnostic information for both sensorineural and conductive-mechanism function is incomplete for high frequencies. A new magnetostrictive bone-conduction transducer that has the potential for improved output in the high-frequency range was evaluated in the laboratory and in a variety of subjects with normal hearing (N=11) or sensorineural hearing loss (N=9). Laboratory results indicated that harmonic distortion and acoustic radiation were both sufficiently low to allow accurate threshold measurements. Auditory thresholds obtained with this magnetostrictive bone-conduction transducer can be measured accurately under conventional clinical conditions for frequencies up to 16 kHz and levels up to 85 dB HL. These measures can be used to accurately characterize sensorineural hearing sensitivity for high frequencies and, when combined with standard air-conduction measures for high frequencies, to accurately characterize conductive-mechanism function for frequencies higher than possible with current diagnostic bone-conduction technology.


Subject(s)
Audiometry, Pure-Tone/methods , Bone Conduction/physiology , Ear, Middle/physiology , Hearing/physiology , Acoustic Stimulation , Audiometry, Pure-Tone/instrumentation , Auditory Threshold/physiology , Hearing Loss, Conductive/diagnosis , Hearing Loss, Conductive/physiopathology , Hearing Loss, High-Frequency/diagnosis , Hearing Loss, High-Frequency/physiopathology , Hearing Loss, Sensorineural/diagnosis , Hearing Loss, Sensorineural/physiopathology , Humans , Speech Acoustics , Transducers , Vibration
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