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March 2, 2026Journal of NeuroEngineering and Rehabilitation2 citationsOpen Access

Does transcranial direct current stimulation enhance sensorimotor recovery in chronic ankle instability? A systematic review and meta-analysis

ZZZhaohong ZengZXZhen XuBSBin Shen

Key Points

  • This review aimed to assess the efficacy of transcranial direct current stimulation for enhancing sensorimotor recovery in chronic ankle instability.
  • Systematic review and meta-analysis of existing trials
  • Literature search conducted on multiple databases
  • Use of random effects model for pooled effect sizes calculation
  • Subgroup analyses and meta-regressions to identify moderating factors
  • Risk of bias assessed with RoB 2 tool and methodological quality evaluated using PEDro scale.
  • tDCS improved balance control (g = 0.27, p = 0.009) and sensorimotor performance (g = 0.16, p = 0.023) compared to control
  • No significant changes in kinematics (g = 0.16, p = 0.081) or neural excitability (g = -0.07, p = 0.633) observed
  • Patient-reported outcomes showed no significant differences (g = 0.11, p = 0.558)
  • Online stimulation and HD-tDCS demonstrated greater improvements in balance when combined with foot core exercise.

Abstract

Chronic ankle instability (CAI) is related to sensorimotor dysfunction and maladaptive neuroplasticity. Transcranial direct current stimulation (tDCS) is considered a potential method for CAI rehabilitation, but its efficacy and underlying mechanisms remain inconclusive. This study aimed to comprehensively synthesise the current evidence of tDCS for sensorimotor recovery in CAI and evaluate its efficacy, moderating factors and potential mechanisms. PubMed, Web of Science, Embase, SPORTDiscus and Scopus were searched in January 2026. The random effects model was employed to meta-analyses to estimate pooled effect sizes. Subgroup analyses and meta-regressions were performed to reveal potential moderators. Risk of bias was evaluated using the RoB 2 tool, and methodological quality was assessed using the PEDro scale. Eleven trials involving 310 participants were included. Compared with control, tDCS significantly improved balance control (g = 0.27, p = 0.009) and sensorimotor functional performance (g = 0.16, p = 0.023), whereas no statistically significant change was observed in kinematics (g = 0.16, p = 0.081), neural excitability (g = − 0.07, p = 0.633) and patient-reported outcomes (g = 0.11, p = 0.558). Subgroup analyses showed that online stimulation, High-definition transcranial direct current stimulation (HD-tDCS) and the combination with foot core exercise (FCE) appeared to yield enhanced improvements in balance. tDCS is of great promise to improve balance control and sensorimotor function in CAI. Still the underlying neurophysiological mechanisms should be more explicitly characterized. Future studies are warranted to examine such benefits of interventions using tDCS for individuals suffering from CAI.

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Cite This Study

Zeng et al. (2026) studied this question.

synapsesocial.com/papers/69a52920f1e85e5c73bf07abhttps://doi.org/10.1186/s12984-026-01916-9
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Transcranial Direct Current Stimulation Combined With Balance Training for Chronic Ankle Instability: A Double-Blind, Pilot Randomized Controlled Trial2026
  2. 2Effects of Transcranial Direct Current Stimulation (tDCS) on Balance, Functional Performance, and Neurocognitive Function in Males with Chronic Ankle Instability: Study Protocol for a Randomized Controlled Trial2026
  3. 3Individualized transcranial direct current stimulation combined with foot core exercise improves foot and ankle sensorimotor function and static postural control in individuals with chronic ankle instability2025 · 9 citations
  4. 4Effects of Combining Transcranial Direct Current Stimulation With Balance Training on Anticipatory Postural Adjustments in Persons With Chronic Ankle Instability2024 · 16 citations
  5. 5Effect of Cerebellar tDCS on Postural Control and Neuroplastic Changes in Chronic Ankle Instability2025