Literature DB >> 15365226

Propofol-induced alpha rhythm.

Vladimir A Feshchenko1, Robert A Veselis, Ruth A Reinsel.   

Abstract

The electroencephalographic effects of two intravenous sedative/hypnotic drugs, propofol and thiopental, were studied at three stable blood concentrations in 52 normal healthy volunteers. The higher concentration resulted in unresponsiveness (lack of response to auditory/tactile stimuli) in all subjects. This report describes the strong frontal-central rhythms apparent in this state using a quantitative description of oscillatory systems underlying the rhythm. These rhythms occur when sedative drug concentrations are greater than those producing the well-described increase in broadband beta-power associated with many sedative drugs. Propofol induces rhythms in the alpha-range, while thiopental produces rhythms in the beta-range. Quasistationary for a period of about 1 h, these rhythms exceed the baseline alpha-rhythm in power. By their resonant nature, these propofol-induced rhythms are analogous to 'the classic alpha-rhythm', but quantitative characteristics of the underlying oscillatory systems are different. Baseline properties of the oscillatory system underlying the initial resting alpha-rhythm recover completely as drug concentration decays to negligible values.

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Year:  2004        PMID: 15365226     DOI: 10.1159/000079981

Source DB:  PubMed          Journal:  Neuropsychobiology        ISSN: 0302-282X            Impact factor:   2.328


  58 in total

1.  Thalamocortical model for a propofol-induced alpha-rhythm associated with loss of consciousness.

Authors:  Shinung Ching; Aylin Cimenser; Patrick L Purdon; Emery N Brown; Nancy J Kopell
Journal:  Proc Natl Acad Sci U S A       Date:  2010-12-13       Impact factor: 11.205

2.  How the cortico-thalamic feedback affects the EEG power spectrum over frontal and occipital regions during propofol-induced sedation.

Authors:  Meysam Hashemi; Axel Hutt; Jamie Sleigh
Journal:  J Comput Neurosci       Date:  2015-08-11       Impact factor: 1.621

Review 3.  Clinical Electroencephalography for Anesthesiologists: Part I: Background and Basic Signatures.

Authors:  Patrick L Purdon; Aaron Sampson; Kara J Pavone; Emery N Brown
Journal:  Anesthesiology       Date:  2015-10       Impact factor: 7.892

4.  Thalamocortical mechanisms for the anteriorization of α rhythms during propofol-induced unconsciousness.

Authors:  Sujith Vijayan; Shinung Ching; Patrick L Purdon; Emery N Brown; Nancy J Kopell
Journal:  J Neurosci       Date:  2013-07-03       Impact factor: 6.167

5.  Long-range temporal correlations in the brain distinguish conscious wakefulness from induced unconsciousness.

Authors:  Thomas Thiery; Tarek Lajnef; Etienne Combrisson; Arthur Dehgan; Pierre Rainville; George A Mashour; Stefanie Blain-Moraes; Karim Jerbi
Journal:  Neuroimage       Date:  2018-06-07       Impact factor: 6.556

Review 6.  Modeling the dynamical effects of anesthesia on brain circuits.

Authors:  Shinung Ching; Emery N Brown
Journal:  Curr Opin Neurobiol       Date:  2014-01-21       Impact factor: 6.627

7.  Age-dependency of sevoflurane-induced electroencephalogram dynamics in children.

Authors:  O Akeju; K J Pavone; J A Thum; P G Firth; M B Westover; M Puglia; E S Shank; E N Brown; P L Purdon
Journal:  Br J Anaesth       Date:  2015-07       Impact factor: 9.166

8.  The Ageing Brain: Age-dependent changes in the electroencephalogram during propofol and sevoflurane general anaesthesia.

Authors:  P L Purdon; K J Pavone; O Akeju; A C Smith; A L Sampson; J Lee; D W Zhou; K Solt; E N Brown
Journal:  Br J Anaesth       Date:  2015-07       Impact factor: 9.166

9.  Percolation Model of Sensory Transmission and Loss of Consciousness Under General Anesthesia.

Authors:  David W Zhou; David D Mowrey; Pei Tang; Yan Xu
Journal:  Phys Rev Lett       Date:  2015-09-04       Impact factor: 9.161

10.  In reply.

Authors:  Patrick L Purdon; David W Zhou; Oluwaseun Akeju; Emery N Brown
Journal:  Anesthesiology       Date:  2015-09       Impact factor: 7.892

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