Literature DB >> 22648382

The conductive hearing loss due to an experimentally induced middle ear effusion alters the interaural level and time difference cues to sound location.

Jennifer L Thornton1, Keely M Chevallier, Kanthaiah Koka, J Eric Lupo, Daniel J Tollin.   

Abstract

Otitis media with effusion (OME) is a pathologic condition of the middle ear that leads to a mild to moderate conductive hearing loss as a result of fluid in the middle ear. Recurring OME in children during the first few years of life has been shown to be associated with poor detection and recognition of sounds in noisy environments, hypothesized to result due to altered sound localization cues. To explore this hypothesis, we simulated a middle ear effusion by filling the middle ear space of chinchillas with different viscosities and volumes of silicone oil to simulate varying degrees of OME. While the effects of middle ear effusions on the interaural level difference (ILD) cue to location are known, little is known about whether and how middle ear effusions affect interaural time differences (ITDs). Cochlear microphonic amplitudes and phases were measured in response to sounds delivered from several locations in azimuth before and after filling the middle ear with fluid. Significant attenuations (20-40 dB) of sound were observed when the middle ear was filled with at least 1.0 ml of fluid with a viscosity of 3.5 Poise (P) or greater. As expected, ILDs were altered by ~30 dB. Additionally, ITDs were shifted by ~600 μs for low frequency stimuli (<4 kHz) due to a delay in the transmission of sound to the inner ear. The data show that in an experimental model of OME, ILDs and ITDs are shifted in the spatial direction of the ear without the experimental effusion.

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Year:  2012        PMID: 22648382      PMCID: PMC3441957          DOI: 10.1007/s10162-012-0335-2

Source DB:  PubMed          Journal:  J Assoc Res Otolaryngol        ISSN: 1438-7573


  48 in total

1.  Effects of conductive hearing loss on temporal aspects of sound transmission through the ear.

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Journal:  Hear Res       Date:  2003-03       Impact factor: 3.208

2.  Conductive hearing loss results in changes in cytochrome oxidase activity in gerbil central auditory system.

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Journal:  J Assoc Res Otolaryngol       Date:  2002-03

3.  Audiometry and tympanometry in relation to middle ear effusions in children.

Authors:  C D Bluestone; Q C Beery; J L Paradise
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4.  Audibility curve of the chinchilla.

Authors:  J D Miller
Journal:  J Acoust Soc Am       Date:  1970-08       Impact factor: 1.840

5.  Travel time in the cochlea and its determination from cochlear-microphonic data.

Authors:  P Dallos; M A Cheatham
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6.  Behaviour and developmental effects of otitis media with effusion into the teens.

Authors:  K E Bennett; M P Haggard; P A Silva; I A Stewart
Journal:  Arch Dis Child       Date:  2001-08       Impact factor: 3.791

Review 7.  Evaluating the perceptual and pathophysiological consequences of auditory deprivation in early postnatal life: a comparison of basic and clinical studies.

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8.  Effects of otitis media with effusion (OME) on central auditory function.

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9.  Mechanisms of hearing loss resulting from middle-ear fluid.

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  7 in total

1.  Conductive hearing loss induced by experimental middle-ear effusion in a chinchilla model reveals impaired tympanic membrane-coupled ossicular chain movement.

Authors:  Jennifer L Thornton; Keely M Chevallier; Kanthaiah Koka; Sandra A Gabbard; Daniel J Tollin; Daniel Tollin
Journal:  J Assoc Res Otolaryngol       Date:  2013-04-25

2.  Intracochlear Pressures in Simulated Otitis Media With Effusion: A Temporal Bone Study.

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5.  Improving the Differential Diagnosis of Otitis Media With Effusion Using Wideband Acoustic Immittance.

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6.  Long-term influence of recurrent acute otitis media on neural involuntary attention switching in 2-year-old children.

Authors:  Sini Haapala; Elina Niemitalo-Haapola; Antti Raappana; Tiia Kujala; Kalervo Suominen; Eira Jansson-Verkasalo; Teija Kujala
Journal:  Behav Brain Funct       Date:  2016-01-04       Impact factor: 3.759

7.  Improving Sensitivity of the Digits-In-Noise Test Using Antiphasic Stimuli.

Authors:  Karina C De Sousa; De Wet Swanepoel; David R Moore; Hermanus Carel Myburgh; Cas Smits
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  7 in total

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