Age-related hearing loss (presbyacusis) is among the most prevalent handicaps in humans over 65 years of age and will become an even greater health problem as population demographics shift towards the elderly. Studies of animal models of presbyacusis and of human temporal bones have provided a basic understanding of the histopathologic changes in the aging inner ear. However, knowledge about the primary cellular injury, the sequence of subsequent pathological events and the underlying molecular changes leading to loss of auditory function with age remains limited. This project proposes to address these issues through three specific areas of investigation.
Aim 3. 1 seeks to define the sequence of age-dependent histopathologic changes and to characterize age-related alterations in the expression of proteins in the gerbil cochlea.
Aim 3. 2 focuses on identifying and characterizing genes that show age-related alterations in their expression patterns in the gerbil inner ear.
Aim 3. 3 provides comparative data on human presbyacusis using similar approaches in studies of well-preserved, prospectively obtained human inner ears. The human studies will be driven by results obtained in Aims 3.1 and 3.2. The planned experiments will provide important new information concerning the cellular and molecular events leading to hearing loss in the elderly, and along with data obtained in Project 4, should form the rationale for designing pharmacological- gene-mediated therapies for the treatment and prevention of presbyacusis.

Project Start
1997-07-01
Project End
1998-06-30
Budget Start
1996-10-01
Budget End
1997-09-30
Support Year
11
Fiscal Year
1997
Total Cost
Indirect Cost
Name
Medical University of South Carolina
Department
Type
DUNS #
183710748
City
Charleston
State
SC
Country
United States
Zip Code
29425
Lewis, Morag A; Nolan, Lisa S; Cadge, Barbara A et al. (2018) Whole exome sequencing in adult-onset hearing loss reveals a high load of predicted pathogenic variants in known deafness-associated genes and identifies new candidate genes. BMC Med Genomics 11:77
Bologna, William J; Vaden Jr, Kenneth I; Ahlstrom, Jayne B et al. (2018) Age effects on perceptual organization of speech: Contributions of glimpsing, phonemic restoration, and speech segregation. J Acoust Soc Am 144:267
Panganiban, Clarisse H; Barth, Jeremy L; Darbelli, Lama et al. (2018) Noise-induced dysregulation of Quaking RNA binding proteins contributes to auditory nerve demyelination and hearing loss. J Neurosci :
Chiarello, Christine; Vaden Jr, Kenneth I; Eckert, Mark A (2018) Orthographic influence on spoken word identification: Behavioral and fMRI evidence. Neuropsychologia 111:103-111
Harris, Kelly C; Vaden Jr, Kenneth I; McClaskey, Carolyn M et al. (2018) Complementary metrics of human auditory nerve function derived from compound action potentials. J Neurophysiol 119:1019-1028
McRackan, Theodore R; Fabie, Joshua E; Burton, Jane A et al. (2018) Earphone and Aided Word Recognition Differences in Cochlear Implant Candidates. Otol Neurotol 39:e543-e549
Dubno, Judy R (2018) Beyond the audiogram: application of models of auditory fitness for duty to assess communication in the real world. Int J Audiol 57:321-322
McRackan, Theodore R; Clinkscales, William B; Ahlstrom, Jayne B et al. (2018) Factors associated with benefit of active middle ear implants compared to conventional hearing aids. Laryngoscope 128:2133-2138
Dias, James W; McClaskey, Carolyn M; Harris, Kelly C (2018) Time-Compressed Speech Identification Is Predicted by Auditory Neural Processing, Perceptuomotor Speed, and Executive Functioning in Younger and Older Listeners. J Assoc Res Otolaryngol :
Worley, Mitchell L; Schlosser, Rodney J; Soler, Zachary M et al. (2018) Age-related differences in olfactory cleft volume in adults: A computational volumetric study. Laryngoscope :

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