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Effect of conventional transcranial direct current stimulation devices and electrode sizes on motor cortical excitability of the quadriceps muscle.


ABSTRACT:

Background

There is a growing concern among the scientific community that the effects of transcranial direct current stimulation (tDCS) are highly variable across studies. The use of different tDCS devices and electrode sizes may contribute to this variability; however, this issue has not been verified experimentally.

Objective

To evaluate the effects of tDCS device and electrode size on quadriceps motor cortical excitability.

Methods

The effect of tDCS device and electrode size on quadriceps motor cortical excitability was quantified across a range of TMS intensities using a novel evoked torque approach that has been previously shown to be highly reliable. In experiment 1, anodal tDCS-induced excitability changes were measured in twenty individuals using two devices (Empi and Soterix) on two separate days. In experiment 2, anodal tDCS-induced excitability changes were measured in thirty individuals divided into three groups based on the electrode size. A novel Bayesian approach was used in addition to the classical hypothesis testing during data analyses.

Results

There were no significant main or interaction effects, indicating that cortical excitability did not differ between different tDCS devices or electrode sizes. The lack of pre-post time effect in both experiments indicated that cortical excitability was minimally affected by anodal tDCS. Bayesian analyses indicated that the null model was more favored than the main or the interaction effects model.

Conclusions

Motor cortical excitability was not altered by anodal tDCS and did not differ by devices or electrode sizes used in the study. Future studies should examine if behavioral outcomes are different based on tDCS device or electrode size.

SUBMITTER: Gardi AZ 

PROVIDER: S-EPMC8926458 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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Publications

Effect of conventional transcranial direct current stimulation devices and electrode sizes on motor cortical excitability of the quadriceps muscle.

Gardi Adam Z AZ   Vogel Amanda K AK   Dharia Aastha K AK   Krishnan Chandramouli C  

Restorative neurology and neuroscience 20210101 5


<h4>Background</h4>There is a growing concern among the scientific community that the effects of transcranial direct current stimulation (tDCS) are highly variable across studies. The use of different tDCS devices and electrode sizes may contribute to this variability; however, this issue has not been verified experimentally.<h4>Objective</h4>To evaluate the effects of tDCS device and electrode size on quadriceps motor cortical excitability.<h4>Methods</h4>The effect of tDCS device and electrode  ...[more]

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