Differential effects of mass-loading the eardrum and stiffening the middle ear on wideband absorbance

Author:

Lewis James D.1,Rutherford Alicia12,Stanford Kathleen E.13

Affiliation:

1. Department of Audiology & Speech Pathology, University of Tennessee Health Science Center 1 , Knoxville, Tennessee 37996, USA

2. Knoxville Veterans Affairs, Audiology 2 , Knoxville, Tennessee 37919, USA

3. Greater Knoxville Ear, Nose, and Throat 3 , Powell, Tennessee 37849, USA

Abstract

The current work investigated the effects of mass-loading the eardrum on wideband absorbance in humans. A non-invasive approach to mass-loading the eardrum was utilized in which water was placed on the eardrum via ear canal access. The mass-loaded absorbance was compared to absorbance measured for two alternative middle ear states: normal and stiffened. To stiffen the ear, subjects pressurized the middle ear through either exsufflation or insufflation concurrent with Eustachian tube opening. Mass-loading the eardrum was hypothesized to reduce high-frequency absorbance, whereas pressurizing the middle ear was hypothesized to reduce low- to mid-frequency absorbance. Discriminant linear analysis classification was performed to evaluate the utility of absorbance in differentiating between conditions. Water on the eardrum reduced absorbance over the 0.7- to 6-kHz frequency range and increased absorbance at frequencies below approximately 0.5 kHz; these changes approximated the pattern of changes reported in both hearing thresholds and stapes motion upon mass-loading the eardrum. Pressurizing the middle ear reduced the absorbance over the 0.125- to 4-kHz frequency range. Several classification models based on the absorbance in two- or three-frequency bands had accuracy exceeding 88%.

Publisher

Acoustical Society of America (ASA)

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