The mammalian inner ear contains two types of sensory cells, inner hair cells (IHCs) and outer hair cells (OHCs). A great deal is known about the deleterious effects that OHC damage has on auditory function; however, almost nothing is known about the functional deficits that are associated with IHC damage. We have developed a preparation in which it is possible to use carboplatin, an anti-neoplastic agent, to selectively destroy the IHCs in the chinchilla while retaining a functionally intact population of OHCs. We will use this preparation to determine how IHC damage affects the discharge patterns of single auditory nerve fibers and how the selective loss of IHCs and type I afferent neurons affects behavioral measures of hearing. The specific questions that will be addressed are: (1) Do the spontaneous discharge rates, driven discharge rates and the adaptation and recovery of discharge rate eventually recover to their normal levels following carboplatin treatment? (2) Is the elevation of threshold in auditory nerve fibers linked to stereocilia damage on IHCs? (3) Does partial IHC loss alter behavioral thresholds? (4) Does partial IHC loss lead to abnormal intensity discrimination? (5) Does partial IHC loss lead to abnormal frequency distribution? (6) Does partial IHC loss lead to abnormal temporal resolution? The proposed experiments have the potential to clarify the functional role of IHCs at the level of the cochlea and to increase our understanding of how IHC damage alters our ability to hear critical features of acoustic stimuli.

Project Start
2002-01-01
Project End
2002-12-31
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
4
Fiscal Year
2002
Total Cost
$165,355
Indirect Cost
Name
State University of New York at Buffalo
Department
Type
DUNS #
038633251
City
Buffalo
State
NY
Country
United States
Zip Code
14260
Fetoni, Anna R; Bielefeld, Eric C; Paludetti, Gaetano et al. (2014) A putative role of p53 pathway against impulse noise induced damage as demonstrated by protection with pifithrin-alpha and a Src inhibitor. Neurosci Res 81-82:30-7
Cowper-Smith, C D; Dingle, R N; Guo, Y et al. (2010) Synchronous auditory nerve activity in the carboplatin-chinchilla model of auditory neuropathy. J Acoust Soc Am 128:EL56-62
McNerney, Kathleen M; Burkard, Robert F (2010) The effects of a second stimulus on the auditory steady state response (ASSR) from the inferior colliculus of the chinchilla. Int J Audiol 49:561-73
El-Badry, Mohamed M; McFadden, Sandra L (2009) Evaluation of inner hair cell and nerve fiber loss as sufficient pathologies underlying auditory neuropathy. Hear Res 255:84-90
El-Badry, Mohamed M; McFadden, Sandra L (2007) Electrophysiological correlates of progressive sensorineural pathology in carboplatin-treated chinchillas. Brain Res 1134:122-30
Hu, Bo Hua; Henderson, Donald; Nicotera, Thomas M (2006) Extremely rapid induction of outer hair cell apoptosis in the chinchilla cochlea following exposure to impulse noise. Hear Res 211:16-25
Sun, Wei; Mercado 3rd, Eduardo; Wang, Ping et al. (2005) Changes in NMDA receptor expression in auditory cortex after learning. Neurosci Lett 374:63-8
Godfrey, Donald A; Godfrey, Matthew A; Ding, Da-Lian et al. (2005) Amino acid concentrations in chinchilla cochlear nucleus at different times after carboplatin treatment. Hear Res 206:64-73
Bielefeld, Eric C; Hynes, Sarah; Pryznosch, David et al. (2005) A comparison of the protective effects of systemic administration of a pro-glutathione drug and a Src-PTK inhibitor against noise-induced hearing loss. Noise Health 7:24-30
Szalda, Kathleen; Burkard, Robert (2005) The effects of nembutal anesthesia on the auditory steady-state response (ASSR) from the inferior colliculus and auditory cortex of the chinchilla. Hear Res 203:32-44

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