Literature DB >> 15753425

Safety and cognitive effect of frontal DC brain polarization in healthy individuals.

M B Iyer1, U Mattu, J Grafman, M Lomarev, S Sato, E M Wassermann.   

Abstract

BACKGROUND: Data from the human motor cortex suggest that, depending on polarity, direct current (DC) brain polarization can depress or activate cortical neurons. Activating effects on the frontal lobe might be beneficial for patients with frontal lobe disorders. This phase 1 study tested the safety of frontal DC, including its effects on frontal and other brain functions.
METHODS: The authors applied 20 minutes of anodal, cathodal, or sham DC to the left prefrontal cortex in three groups of right-handed subjects and looked for effects on global measures of processing and psychomotor speed, emotion, and verbal fluency, a measure of local cortical function. In one experiment (n = 30), the authors tested before and after 1 mA DC and monitored EEG in 9 subjects. In two other experiments using 1 mA (n = 43) and 2 mA (n = 30), the authors tested before and then starting 5 minutes after the onset of DC.
RESULTS: All subjects tolerated DC well. There were no significant effects on performance with 1 mA DC. At 2 mA, verbal fluency improved significantly with anodal and decreased mildly with cathodal DC. There were no clinically significant effects on the other measures.
CONCLUSIONS: Limited exposure to direct current polarization of the prefrontal cortex is safe and can enhance verbal fluency selectively in healthy subjects. As such, it deserves consideration as a procedure to improve frontal lobe function in patients.

Entities:  

Mesh:

Year:  2005        PMID: 15753425     DOI: 10.1212/01.WNL.0000152986.07469.E9

Source DB:  PubMed          Journal:  Neurology        ISSN: 0028-3878            Impact factor:   9.910


  213 in total

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Authors:  Benjamin Straube; David Wolk; Anjan Chatterjee
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Review 2.  tDCS polarity effects in motor and cognitive domains: a meta-analytical review.

Authors:  Liron Jacobson; Meni Koslowsky; Michal Lavidor
Journal:  Exp Brain Res       Date:  2011-10-12       Impact factor: 1.972

3.  Transcranial direct current stimulation in patients with skull defects and skull plates: high-resolution computational FEM study of factors altering cortical current flow.

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4.  Dissociating the roles of the cerebellum and motor cortex during adaptive learning: the motor cortex retains what the cerebellum learns.

Authors:  Joseph M Galea; Alejandro Vazquez; Neel Pasricha; Jean-Jacques Orban de Xivry; Pablo Celnik
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5.  Non-invasive brain stimulation enhances fine motor control of the hemiparetic ankle: implications for rehabilitation.

Authors:  Sangeetha Madhavan; Kenneth A Weber; James W Stinear
Journal:  Exp Brain Res       Date:  2010-12-19       Impact factor: 1.972

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7.  Left lateralizing transcranial direct current stimulation improves reading efficiency.

Authors:  Peter E Turkeltaub; Jennifer Benson; Roy H Hamilton; Abhishek Datta; Marom Bikson; H Branch Coslett
Journal:  Brain Stimul       Date:  2011-05-05       Impact factor: 8.955

8.  Gyri-precise head model of transcranial direct current stimulation: improved spatial focality using a ring electrode versus conventional rectangular pad.

Authors:  Abhishek Datta; Varun Bansal; Julian Diaz; Jinal Patel; Davide Reato; Marom Bikson
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9.  Effects of transcranial direct current stimulation on the auditory mismatch negativity response and working memory performance in schizophrenia: a pilot study.

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Journal:  J Neural Transm (Vienna)       Date:  2017-09-01       Impact factor: 3.575

Review 10.  Electrical stimulation of cranial nerves in cognition and disease.

Authors:  Devin Adair; Dennis Truong; Zeinab Esmaeilpour; Nigel Gebodh; Helen Borges; Libby Ho; J Douglas Bremner; Bashar W Badran; Vitaly Napadow; Vincent P Clark; Marom Bikson
Journal:  Brain Stimul       Date:  2020-02-23       Impact factor: 8.955

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