Literature DB >> 2768087

Morphology and response properties of single olivocochlear fibers in the guinea pig.

M C Brown1.   

Abstract

Cochlear efferent and afferent units were recorded from the spiral ganglion in anesthetized guinea pigs. Efferent units were identified by their regular discharge patterns and their long response latencies to tone bursts. In some cases these physiological criteria were confirmed by anatomical tracing of single axons labeled with horseradish peroxidase. Labeled efferent axons traveled in the vestibular nerve root and the intraganglionic spiral bundle, and crossed the tunnel to innervate up to 61 outer hair cells over longitudinal distances of 0.15 to 2.1 mm. Efferent units were subdivided into classes by their excitatory responses to monaural tone bursts. Fifty-seven percent responded only to ipsilateral-ear sound, 28% only to contralateral-ear sound, and 15% to sound in either ear. Tuning curves from efferent units were generally similar in shape to afferent units, often having equally low thresholds and equally high Q10s. Efferent Q10s were somewhat lower from preparations anesthetized with a Urethane/Innovar combination than from preparations anesthetized with a Nembutal/Innovar combination. Efferent units with spontaneous activity were uncommon at the start of the recording sessions but were more frequently encountered later in the experiments. Spontaneous activity could often be suppressed by tonal stimuli, even sometimes to the non-excitatory ear of Ipsi and Contra units.

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Year:  1989        PMID: 2768087     DOI: 10.1016/0378-5955(89)90103-2

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


  36 in total

1.  Effects of contralateral sound stimulation on unit activity of ventral cochlear nucleus neurons.

Authors:  S E Shore; C J Sumner; S C Bledsoe; J Lu
Journal:  Exp Brain Res       Date:  2003-09-05       Impact factor: 1.972

2.  Responses of medial olivocochlear neurons. Specifying the central pathways of the medial olivocochlear reflex.

Authors:  M C Brown; R K de Venecia; J J Guinan
Journal:  Exp Brain Res       Date:  2003-10-14       Impact factor: 1.972

3.  Diversity of axonal ramifications belonging to single lateral and medial olivocochlear neurons.

Authors:  W Bruce Warr; Jo Ellen Boche
Journal:  Exp Brain Res       Date:  2003-10-14       Impact factor: 1.972

4.  Frequency tuning of the contralateral medial olivocochlear reflex in humans.

Authors:  Wei Zhao; Sumitrajit Dhar
Journal:  J Neurophysiol       Date:  2012-03-28       Impact factor: 2.714

5.  Recording and labeling at a site along the cochlea shows alignment of medial olivocochlear and auditory nerve tonotopic mappings.

Authors:  M Christian Brown
Journal:  J Neurophysiol       Date:  2016-01-28       Impact factor: 2.714

6.  Auditory physiology and anatomy of octavolateral efferent neurons in a teleost fish.

Authors:  Seth M Tomchik; Zhongmin Lu
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2005-09-23       Impact factor: 1.836

7.  Medial olivocochlear reflex interneurons are located in the posteroventral cochlear nucleus: a kainic acid lesion study in guinea pigs.

Authors:  Ronald K de Venecia; M Charles Liberman; John J Guinan; M Christian Brown
Journal:  J Comp Neurol       Date:  2005-07-11       Impact factor: 3.215

Review 8.  Hair cells--beyond the transducer.

Authors:  G D Housley; W Marcotti; D Navaratnam; E N Yamoah
Journal:  J Membr Biol       Date:  2006-05-25       Impact factor: 1.843

9.  Temporal and binaural properties in dorsal cochlear nucleus and its output tract.

Authors:  P X Joris; P H Smith
Journal:  J Neurosci       Date:  1998-12-01       Impact factor: 6.167

10.  Olivocochlear innervation in the mouse: immunocytochemical maps, crossed versus uncrossed contributions, and transmitter colocalization.

Authors:  Stéphane F Maison; Joe C Adams; M Charles Liberman
Journal:  J Comp Neurol       Date:  2003-01-13       Impact factor: 3.215

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