Literature DB >> 17329049

The distributed auditory cortex.

Jeffery A Winer1, Charles C Lee.   

Abstract

A synthesis of cat auditory cortex (AC) organization is presented in which the extrinsic and intrinsic connections interact to derive a unified profile of the auditory stream and use it to direct and modify cortical and subcortical information flow. Thus, the thalamocortical input provides essential sensory information about peripheral stimulus events, which AC redirects locally for feature extraction, and then conveys to parallel auditory, multisensory, premotor, limbic, and cognitive centers for further analysis. The corticofugal output influences areas as remote as the pons and the cochlear nucleus, structures whose effects upon AC are entirely indirect, and it has diverse roles in the transmission of information through the medial geniculate body and inferior colliculus. The distributed AC is thus construed as a functional network in which the auditory percept is assembled for subsequent redistribution in sensory, premotor, and cognitive streams contingent on the derived interpretation of the acoustic events. The confluence of auditory and multisensory streams likely precedes cognitive processing of sound. The distributed AC constitutes the largest and arguably the most complete representation of the auditory world. Many facets of this scheme may apply in rodent and primate AC as well. We propose that the distributed auditory cortex contributes to local processing regimes in regions as disparate as the frontal pole and the cochlear nucleus to construct the acoustic percept.

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Year:  2007        PMID: 17329049      PMCID: PMC2637155          DOI: 10.1016/j.heares.2007.01.017

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


  91 in total

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Authors:  C E Schreiner; H L Read; M L Sutter
Journal:  Annu Rev Neurosci       Date:  2000       Impact factor: 12.449

2.  Functional mapping of the primate auditory system.

Authors:  Amy Poremba; Richard C Saunders; Alison M Crane; Michelle Cook; Louis Sokoloff; Mortimer Mishkin
Journal:  Science       Date:  2003-01-24       Impact factor: 47.728

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Authors:  C E Schreiner
Journal:  Curr Opin Neurobiol       Date:  1992-08       Impact factor: 6.627

4.  Commissural neurons in layer III of cat primary auditory cortex (AI): pyramidal and non-pyramidal cell input.

Authors:  R A Code; J A Winer
Journal:  J Comp Neurol       Date:  1985-12-22       Impact factor: 3.215

5.  Auditory cortical projections to the cat inferior colliculus.

Authors:  J A Winer; D T Larue; J J Diehl; B J Hefti
Journal:  J Comp Neurol       Date:  1998-10-19       Impact factor: 3.215

Review 6.  What is the amygdala?

Authors:  L W Swanson; G D Petrovich
Journal:  Trends Neurosci       Date:  1998-08       Impact factor: 13.837

7.  Significance of the paralemniscal tegmental area for audio-motor control in the moustached bat, Pteronotus p. parnellii: the afferent off efferent connections of the paralemniscal area.

Authors:  G Schuller; S Fischer; H Schweizer
Journal:  Eur J Neurosci       Date:  1997-02       Impact factor: 3.386

8.  Image-to-sound conversion: experience-induced plasticity in auditory cortex of blindfolded adults.

Authors:  Bettina Pollok; Irmtraud Schnitzler; Petra Stoerig; Thomas Mierdorf; Alfons Schnitzler
Journal:  Exp Brain Res       Date:  2005-11-15       Impact factor: 1.972

9.  Topographic and cytoarchitectonic organization of thalamic neurons related to their targets in low-, middle-, and high-frequency representations in cat auditory cortex.

Authors:  T J Imig; A Morel
Journal:  J Comp Neurol       Date:  1984-08-20       Impact factor: 3.215

10.  Differentially projecting cells in individual layers of the auditory cortex: a double-labeling study.

Authors:  D Wong; J P Kelly
Journal:  Brain Res       Date:  1981-12-28       Impact factor: 3.252

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  53 in total

1.  Hearing without listening: functional connectivity reveals the engagement of multiple nonauditory networks during basic sound processing.

Authors:  Dave R M Langers; Jennifer R Melcher
Journal:  Brain Connect       Date:  2011

Review 2.  Thalamic and cortical pathways supporting auditory processing.

Authors:  Charles C Lee
Journal:  Brain Lang       Date:  2012-06-23       Impact factor: 2.381

3.  Formation and disruption of tonotopy in a large-scale model of the auditory cortex.

Authors:  Markéta Tomková; Jakub Tomek; Ondřej Novák; Ondřej Zelenka; Josef Syka; Cyril Brom
Journal:  J Comput Neurosci       Date:  2015-09-07       Impact factor: 1.621

4.  Branched projections in the auditory thalamocortical and corticocortical systems.

Authors:  A U Kishan; C C Lee; J A Winer
Journal:  Neuroscience       Date:  2008-01-12       Impact factor: 3.590

5.  Spatial sensitivity of neurons in the anterior, posterior, and primary fields of cat auditory cortex.

Authors:  Ian A Harrington; G Christopher Stecker; Ewan A Macpherson; John C Middlebrooks
Journal:  Hear Res       Date:  2008-02-19       Impact factor: 3.208

6.  Connections of cat auditory cortex: I. Thalamocortical system.

Authors:  Charles C Lee; Jeffery A Winer
Journal:  J Comp Neurol       Date:  2008-04-20       Impact factor: 3.215

7.  Connections of cat auditory cortex: III. Corticocortical system.

Authors:  Charles C Lee; Jeffery A Winer
Journal:  J Comp Neurol       Date:  2008-04-20       Impact factor: 3.215

8.  Coding of auditory-stimulus identity in the auditory non-spatial processing stream.

Authors:  Brian E Russ; Ashlee L Ackelson; Allison E Baker; Yale E Cohen
Journal:  J Neurophysiol       Date:  2007-11-14       Impact factor: 2.714

9.  Behavioral modulation of neural encoding of click-trains in the primary and nonprimary auditory cortex of cats.

Authors:  Chao Dong; Ling Qin; Zhenling Zhao; Renjia Zhong; Yu Sato
Journal:  J Neurosci       Date:  2013-08-07       Impact factor: 6.167

Review 10.  Neural mechanisms for the abstraction and use of pitch information in auditory cortex.

Authors:  Xiaoqin Wang; Kerry M M Walker
Journal:  J Neurosci       Date:  2012-09-26       Impact factor: 6.167

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