4.2 Review

The influence of a single transcranial direct current stimulation session on physical fitness in healthy subjects: a systematic review

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Summary: The purpose of this study was to evaluate the effects of anodal tDCS applied over the dorsolateral prefrontal cortex (DLPFC) on muscle endurance in the back-squat exercise. The results showed that the application of anodal tDCS increased the total number of repetitions and the number of repetitions in the first set.

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Summary: Transcranial direct current stimulation (tDCS) has been shown to have positive effects on athletic performance, particularly in endurance exercises such as running and cycling. However, the effects of anodal-tDCS may vary depending on the specific task, with an enhancement in endurance performance seen in time to exhaustion tasks but not in endurance time trial or sprint tasks. The increase in cortical excitability induced by anodal-tDCS could potentially reduce perceived exertion during physical tasks. The task being performed should be taken into consideration when evaluating the results of tDCS interventions.

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Summary: The study investigated the variability of the electric field (E-field) induced by transcranial direct current stimulation (tDCS) and its association with changes in GABA. The results showed that higher mean E-field magnitude in the stimulated cortex was associated with greater anodal tDCS-induced decreases in GABA, supporting the individualized dosing of tDCS.

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Summary: The study found that the electric field strength in the lower dorsolateral prefrontal cortex was most strongly related to improved working memory performance during tDCS stimulation of the left prefrontal cortex. A new tDCS montage was proposed to maximize the electric field strength in that brain region, which could benefit future studies aiming to affect working memory function.

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