Literature DB >> 16550576

Central auditory pathways mediating the rat middle ear muscle reflexes.

Daniel J Lee1, Ronald K de Venecia, John J Guinan, M Christian Brown.   

Abstract

The middle ear muscle (MEM) reflexes function to protect the inner ear from intense acoustic stimuli and to reduce acoustic masking. Sound presented to the same side or to the opposite side activates the MEM reflex on both sides. The ascending limbs of these pathways must be the auditory nerve fibers originating in the cochlea and terminating in the cochlear nucleus, the first relay station for all ascending auditory information. The descending limbs project from the motoneurons in the brainstem to the MEMs on both sides, causing their contraction. Although the ascending and descending pathways are well described, the cochlear nucleus interneurons that mediate these reflex pathways have not been identified. In order to localize the MEM reflex interneurons, we developed a physiologically based reflex assay in the rat that can be used to determine the integrity of the reflex pathways after experimental manipulations. This assay monitored the change in tone levels and distortion product otoacoustic emissions within the ear canal in one ear during the presentation of a reflex-eliciting sound stimulus in the contralateral ear. Preliminary findings using surgical transection and focal lesioning of the auditory brainstem to interrupt the MEM reflexes suggest that MEM reflex interneurons are located in the ventral cochlear nucleus. Copyright 2006 Wiley-Liss, Inc.

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Year:  2006        PMID: 16550576     DOI: 10.1002/ar.a.20296

Source DB:  PubMed          Journal:  Anat Rec A Discov Mol Cell Evol Biol        ISSN: 1552-4884


  9 in total

Review 1.  Auditory brainstem circuits that mediate the middle ear muscle reflex.

Authors:  Sudeep Mukerji; Alanna Marie Windsor; Daniel J Lee
Journal:  Trends Amplif       Date:  2010-09-23

2.  Diverse synaptic terminals on rat stapedius motoneurons.

Authors:  Daniel J Lee; Thane E Benson; M Christian Brown
Journal:  J Assoc Res Otolaryngol       Date:  2008-06-18

3.  Understanding degraded speech leads to perceptual gating of a brainstem reflex in human listeners.

Authors:  Heivet Hernández-Pérez; Jason Mikiel-Hunter; David McAlpine; Sumitrajit Dhar; Sriram Boothalingam; Jessica J M Monaghan; Catherine M McMahon
Journal:  PLoS Biol       Date:  2021-10-20       Impact factor: 8.029

4.  Olivocochlear projections contribute to superior intensity coding in cochlear nucleus small cells.

Authors:  Adam Hockley; Calvin Wu; Susan E Shore
Journal:  J Physiol       Date:  2021-12-06       Impact factor: 6.228

5.  Neurons in the cochlear nuclei controlling the tensor tympani muscle in the rat: a study using pseudorabies virus.

Authors:  I Billig; M S Yeager; A Blikas; Y Raz
Journal:  Brain Res       Date:  2007-04-06       Impact factor: 3.252

6.  Math5 expression and function in the central auditory system.

Authors:  Sara M Saul; Joseph A Brzezinski; Richard A Altschuler; Susan E Shore; Dellaney D Rudolph; Lisa L Kabara; Karin E Halsey; Robert B Hufnagel; Jianxun Zhou; David F Dolan; Tom Glaser
Journal:  Mol Cell Neurosci       Date:  2007-09-20       Impact factor: 4.314

7.  Type II spiral ganglion afferent neurons drive medial olivocochlear reflex suppression of the cochlear amplifier.

Authors:  Kristina E Froud; Ann Chi Yan Wong; Jennie M E Cederholm; Matthias Klugmann; Shaun L Sandow; Jean-Pierre Julien; Allen F Ryan; Gary D Housley
Journal:  Nat Commun       Date:  2015-05-12       Impact factor: 14.919

Review 8.  Cellular and Molecular Underpinnings of Neuronal Assembly in the Central Auditory System during Mouse Development.

Authors:  Maria Di Bonito; Michèle Studer
Journal:  Front Neural Circuits       Date:  2017-04-19       Impact factor: 3.492

9.  Assembly of the auditory circuitry by a Hox genetic network in the mouse brainstem.

Authors:  Maria Di Bonito; Yuichi Narita; Bice Avallone; Luigi Sequino; Marta Mancuso; Gennaro Andolfi; Anna Maria Franzè; Luis Puelles; Filippo M Rijli; Michèle Studer
Journal:  PLoS Genet       Date:  2013-02-07       Impact factor: 5.917

  9 in total

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