Literature DB >> 24956615

High-definition transcranial direct current stimulation induces both acute and persistent changes in broadband cortical synchronization: a simultaneous tDCS-EEG study.

Abhrajeet Roy, Bryan Baxter, Bin He.   

Abstract

The goal of this study was to develop methods for simultaneously acquiring electrophysiological data during high-definition transcranial direct current stimulation (tDCS) using high-resolution electroencephalography (EEG). Previous studies have pointed to the after-effects of tDCS on both motor and cognitive performance, and there appears to be potential for using tDCS in a variety of clinical applications. However, little is known about the real-time effects of tDCS on rhythmic cortical activity in humans due to the technical challenges of simultaneously obtaining electrophysiological data during ongoing stimulation. Furthermore, the mechanisms of action of tDCS in humans are not well understood. We have conducted a simultaneous tDCS-EEG study in a group of healthy human subjects. Significant acute and persistent changes in spontaneous neural activity and event-related synchronization (ERS) were observed during and after the application of high-definition tDCS over the left sensorimotor cortex. Both anodal and cathodal stimulation resulted in acute global changes in broadband cortical activity which were significantly different than the changes observed in response to sham stimulation. For the group of eight subjects studied, broadband individual changes in spontaneous activity during stimulation were apparent both locally and globally. In addition, we found that high-definition tDCS of the left sensorimotor cortex can induce significant ipsilateral and contralateral changes in event-related desynchronization and ERS during motor imagination following the end of the stimulation period. Overall, our results demonstrate the feasibility of acquiring high-resolution EEG during high-definition tDCS and provide evidence that tDCS in humans directly modulates rhythmic cortical synchronization during and after its administration.

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Mesh:

Year:  2014        PMID: 24956615      PMCID: PMC4113724          DOI: 10.1109/TBME.2014.2311071

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  68 in total

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3.  Transcranial direct current stimulation over the primary motor cortex during fMRI.

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8.  Modulation of event-related desynchronization during motor imagery with transcranial direct current stimulation in a patient with severe hemiparetic stroke: a case report.

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  35 in total

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2.  Noninvasive Brain-Computer Interfaces Based on Sensorimotor Rhythms.

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Authors:  Nigel Gebodh; Zeinab Esmaeilpour; Devin Adair; Kenneth Chelette; Jacek Dmochowski; Adam J Woods; Emily S Kappenman; Lucas C Parra; Marom Bikson
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Review 4.  Transcranial Electrical Stimulation for Psychiatric Disorders in Adults: A Primer.

Authors:  Hyein Cho; Lais B Razza; Lucas Borrione; Marom Bikson; Leigh Charvet; Tracy A Dennis-Tiwary; Andre R Brunoni; Pedro Sudbrack-Oliveira
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5.  Sensorimotor Rhythm BCI with Simultaneous High Definition-Transcranial Direct Current Stimulation Alters Task Performance.

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6.  Neuromodulation Management of Chronic Neuropathic Pain in The Central Nervous system.

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7.  Electrophysiological Source Imaging of Brain Networks Perturbed by Low-Intensity Transcranial Focused Ultrasound.

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Journal:  IEEE Trans Biomed Eng       Date:  2016-07-19       Impact factor: 4.538

8.  When brain stimulation backfires: the effects of prefrontal cortex stimulation on impulsivity.

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9.  Delta oscillation underlies the interictal spike changes after repeated transcranial direct current stimulation in a rat model of chronic seizures.

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10.  Input-Output Functions in Human Heads Obtained With Cochlear Implant and Transcranial Electric Stimulation.

Authors:  Phillip Tran; Matthew L Richardson; Fan-Gang Zeng
Journal:  Neuromodulation       Date:  2019-11-11
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