Literature DB >> 9007584

Effects of lidocaine on salicylate-induced discharge of neurons in the inferior colliculus of the guinea pig.

Y Manabe1, S Yoshida, H Saito, H Oka.   

Abstract

Using the extracellular recording method, the effects of lidocaine (a local anesthetic known to relieve tinnitus) on discharge of inferior colliculus (IC) neurons of the guinea pig were studied before and after salicylate (200 mg/kg) administration. The salicylate-induced discharge was inhibited by intravenous injection of lidocaine at a concentration (1 mg/kg) clinically used for treating tinnitus. IC neurons could be classified into two groups according to the difference in sensitivity to lidocaine: (1) weakly-sensitive neurons and (2) highly-sensitive neurons. In weakly-sensitive neurons, the duration of the lidocaine effect lasted for less than 5 min, and the inhibitory action on the discharge of neurons was greater when the latency to sound stimulus became longer. In highly-sensitive neurons, on the other hand, the activity of neurons was almost completely inhibited for longer than 30 min, irrespective of the latency to sound stimulus. The clinical relevance of these types of neurons is discussed.

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Year:  1997        PMID: 9007584     DOI: 10.1016/s0378-5955(96)00181-5

Source DB:  PubMed          Journal:  Hear Res        ISSN: 0378-5955            Impact factor:   3.208


  11 in total

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Authors:  Nicole J Wood; Andrea S Lowe; Joseph P Walton
Journal:  Int J Audiol       Date:  2019-03       Impact factor: 2.117

2.  Noise-induced hyperactivity in the inferior colliculus: its relationship with hyperactivity in the dorsal cochlear nucleus.

Authors:  N F Manzoor; F G Licari; M Klapchar; R L Elkin; Y Gao; G Chen; J A Kaltenbach
Journal:  J Neurophysiol       Date:  2012-05-02       Impact factor: 2.714

Review 3.  Tinnitus: Models and mechanisms.

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

4.  Salicylate increased ascorbic acid levels and neuronal activity in the rat auditory cortex.

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Journal:  Pediatr Investig       Date:  2019-09-26

5.  Metabolic imaging of rat brain during pharmacologically-induced tinnitus.

Authors:  A K Paul; E Lobarinas; R Simmons; D Wack; John C Luisi; J Spernyak; R Mazurchuk; H Abdel-Nabi; R Salvi
Journal:  Neuroimage       Date:  2008-10-02       Impact factor: 6.556

6.  Suppression of noise-induced hyperactivity in the dorsal cochlear nucleus following application of the cholinergic agonist, carbachol.

Authors:  N F Manzoor; G Chen; J A Kaltenbach
Journal:  Brain Res       Date:  2013-05-27       Impact factor: 3.252

7.  Salicylate toxicity model of tinnitus.

Authors:  Daniel Stolzberg; Richard J Salvi; Brian L Allman
Journal:  Front Syst Neurosci       Date:  2012-04-20

Review 8.  Tinnitus: animal models and findings in humans.

Authors:  Jos J Eggermont; Larry E Roberts
Journal:  Cell Tissue Res       Date:  2014-09-30       Impact factor: 5.249

Review 9.  Tinnitus-related changes in the inferior colliculus.

Authors:  Joel I Berger; Ben Coomber
Journal:  Front Neurol       Date:  2015-03-30       Impact factor: 4.003

10.  Central Nervous Activity upon Systemic Salicylate Application in Animals with Kanamycin-Induced Hearing Loss--A Manganese-Enhanced MRI (MEMRI) Study.

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Journal:  PLoS One       Date:  2016-04-14       Impact factor: 3.240

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