Literature DB >> 16899395

Remembering the time: a continuous clock.

Penelope A Lewis1, R Chris Miall.   

Abstract

The neural mechanisms for time measurement are currently a subject of much debate. This article argues that our brains can measure time using the same dorsolateral prefrontal cells that are known to be involved in working memory. Evidence for this is: (1) the dorsolateral prefrontal cortex is integral to both cognitive timing and working memory; (2) both behavioural processes are modulated by dopamine and disrupted by manipulation of dopaminergic projections to the dorsolateral prefrontal cortex; (3) the neurons in question ramp their activity in a temporally predictable way during both types of processing; and (4) this ramping activity is modulated by dopamine. The dual involvement of these prefrontal neurons in working memory and cognitive timing supports a view of the prefrontal cortex as a multipurpose processor recruited by a wide variety of tasks.

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Year:  2006        PMID: 16899395     DOI: 10.1016/j.tics.2006.07.006

Source DB:  PubMed          Journal:  Trends Cogn Sci        ISSN: 1364-6613            Impact factor:   20.229


  76 in total

Review 1.  Neuroanatomical and neurochemical substrates of timing.

Authors:  Jennifer T Coull; Ruey-Kuang Cheng; Warren H Meck
Journal:  Neuropsychopharmacology       Date:  2010-07-28       Impact factor: 7.853

2.  Carving the clock at its component joints: neural bases for interval timing.

Authors:  Elaine B Wencil; H Branch Coslett; Geoffrey K Aguirre; Anjan Chatterjee
Journal:  J Neurophysiol       Date:  2010-03-24       Impact factor: 2.714

3.  Dissociation of duration-based and beat-based auditory timing in cerebellar degeneration.

Authors:  Manon Grube; Freya E Cooper; Patrick F Chinnery; Timothy D Griffiths
Journal:  Proc Natl Acad Sci U S A       Date:  2010-06-08       Impact factor: 11.205

4.  Oxycodone lengthens reproductions of suprasecond time intervals in human research volunteers.

Authors:  Cynthia M Gooch; Brian C Rakitin; Ziva D Cooper; Sandra D Comer; Peter D Balsam
Journal:  Behav Pharmacol       Date:  2011-08       Impact factor: 2.293

5.  Neuronal activity related to anticipated and elapsed time in macaque supplementary eye field.

Authors:  Shogo Ohmae; Xiaofeng Lu; Toshimitsu Takahashi; Yusuke Uchida; Shigeru Kitazawa
Journal:  Exp Brain Res       Date:  2007-12-07       Impact factor: 1.972

6.  Disruption of temporal processing in a subject with probable frontotemporal dementia.

Authors:  Martin Wiener; H Branch Coslett
Journal:  Neuropsychologia       Date:  2008-02-06       Impact factor: 3.139

Review 7.  Spatial-temporal interactions in the human brain.

Authors:  Massimiliano Oliveri; Giacomo Koch; Carlo Caltagirone
Journal:  Exp Brain Res       Date:  2009-05-21       Impact factor: 1.972

Review 8.  The time-emotion paradox.

Authors:  Sylvie Droit-Volet; Sandrine Gil
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2009-07-12       Impact factor: 6.237

9.  Interval timing disruptions in subjects with cerebellar lesions.

Authors:  Cynthia M Gooch; Martin Wiener; Elaine B Wencil; H Branch Coslett
Journal:  Neuropsychologia       Date:  2009-12-04       Impact factor: 3.139

10.  The Organization of Behavior Over Time: Insights from Mid-Session Reversal.

Authors:  Rebecca M Rayburn-Reeves; Robert G Cook
Journal:  Comp Cogn Behav Rev       Date:  2016
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