Literature DB >> 16127711

Effect of unilateral noise exposure on the tonotopic distribution of spontaneous activity in the cochlear nucleus and inferior colliculus in the cortically intact and decorticate rat.

Thomas J Imig1, Dianne Durham.   

Abstract

Effects of unilateral noise exposure on spontaneous activity (SA) in the anteroventral and dorsal cochlear nuclei (AVCN and DCN) and the central nucleus of the inferior colliculus (ICc) were studied in cortically intact and decorticate rats. SA was measured 1 week following exposure using uptake of 14C-labeled 2-deoxyglucose (2DG) in quiet. Optical density (OD) measurements were obtained in low- and high-frequency (LF and HF) areas of each nucleus. We refer to the ipsilateral AVCN and DCN (side of the noise-exposed ear) and the contralateral ICc as direct nuclei and to their opposite side counterparts as indirect nuclei. Noise exposure altered the tonotopic profile of SA in the direct pathway by causing a decrease in the ratio of HF OD to LF OD (HF/LF ratio). In intact animals, the decreased HF/LF ratio was due to decreased HF OD. In decorticate animals, it was due to decreased HF OD and increased LF OD, the latter occurring mainly in the DCN and ICc. Decorticate-intact differences may reflect corticofugal feedback inhibition. Lesion of the dorsal acoustic stria caused a substantial decrement of SA in the contralateral ICc. Furthermore, strong positive correlations between HF/LF ratios in the DCN, AVCN, and contralateral ICc suggest that the cochlear nucleus is a major contributor to SA in the ICc. Noise exposure had opposite and weaker effects on 2DG uptake in the indirect pathway that were attributed to crossed inhibition. Noise-induced changes in the tonotopic profile of SA may represent a neural correlate of tinnitus. Copyright 2005 Wiley-Liss, Inc.

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Year:  2005        PMID: 16127711     DOI: 10.1002/cne.20674

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  15 in total

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Journal:  Hear Res       Date:  2006-05-02       Impact factor: 3.208

2.  Effects of sodium salicylate on spontaneous and evoked spike rate in the dorsal cochlear nucleus.

Authors:  Lei Wei; Dalian Ding; Wei Sun; Matthew A Xu-Friedman; Richard Salvi
Journal:  Hear Res       Date:  2010-04-27       Impact factor: 3.208

3.  Hair cell counts in a rat model of sound damage: Effects of tissue preparation & identification of regions of hair cell loss.

Authors:  Christopher Neal; Stefanie Kennon-McGill; Andrea Freemyer; Axel Shum; Hinrich Staecker; Dianne Durham
Journal:  Hear Res       Date:  2015-08-20       Impact factor: 3.208

4.  Noise-induced hearing loss: Neuropathic pain via Ntrk1 signaling.

Authors:  Senthilvelan Manohar; Kimberly Dahar; Henry J Adler; Ding Dalian; Richard Salvi
Journal:  Mol Cell Neurosci       Date:  2016-07-26       Impact factor: 4.314

5.  Degeneration in the ventral cochlear nucleus after severe noise damage in mice.

Authors:  J Feng; J Bendiske; D K Morest
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Review 6.  Tinnitus: Models and mechanisms.

Authors:  James A Kaltenbach
Journal:  Hear Res       Date:  2010-12-10       Impact factor: 3.208

7.  Pairing vagus nerve stimulation with tones drives plasticity across the auditory pathway.

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Review 8.  Inhibitory neurotransmission in animal models of tinnitus: maladaptive plasticity.

Authors:  Hongning Wang; Thomas J Brozoski; Donald M Caspary
Journal:  Hear Res       Date:  2011-04-21       Impact factor: 3.208

9.  Alterations in the spontaneous discharge patterns of single units in the dorsal cochlear nucleus following intense sound exposure.

Authors:  Paul G Finlayson; James A Kaltenbach
Journal:  Hear Res       Date:  2009-07-19       Impact factor: 3.208

10.  Plasticity at glycinergic synapses in dorsal cochlear nucleus of rats with behavioral evidence of tinnitus.

Authors:  H Wang; T J Brozoski; J G Turner; L Ling; J L Parrish; L F Hughes; D M Caspary
Journal:  Neuroscience       Date:  2009-08-20       Impact factor: 3.590

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