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Evidence-Based Supplement Research
Evidence-Based Supplement Research

Systematic review and meta-analysis of the efficacy of repetitive transcranial magnetic stimulation on post-stroke limb spasticity.

  • 2026-06-11
  • Journal of neurology 273(7)
    • Yongting Huang
    • Liqi Chen
    • Minghui Ding
    • Ziyan Huang
    • Xinxin Chen
    • Kai Li
    • Shijue Li
    • Wai Leung Ambrose Lo
    • Yan Leng

Study Design

Type
Meta-Analysis
Sample size
n = 12
Population
post-stroke patients with a baseline modified Ashworth Scale (MAS) score of ≥ 1
Methods
meta-analysis of randomized-controlled trials; comprehensive search in Embase, Cochrane Library, and PubMed; random-effects model applied for data synthesis

Background

Post-stroke spasticity significantly impairs motor function in patients. Repetitive transcranial magnetic stimulation (rTMS), including conventional rTMS and its patterned protocols such as continuous and intermittent theta-burst stimulation (cTBS/iTBS), has been widely investigated as a promising noninvasive neuromodulation technique to promote motor recovery after stroke. However, the efficacy of rTMS in treating post-stroke spasticity remains unclear. Therefore, this study aims to evaluate the therapeutic effects of rTMS on post-stroke spasticity through a meta-analysis.

Methods

A comprehensive search was conducted for randomized-controlled trials (RCTs) published between January 1, 2010, and July 1, 2025, in the Embase, Cochrane Library, and PubMed databases. The inclusion criteria were post-stroke patients with a baseline modified Ashworth Scale (MAS) score of ≥ 1, indicating the presence of spasticity. The interventions of interest were repetitive transcranial magnetic stimulation (rTMS) or intermittent/transient theta-burst stimulation (iTBS/cTBS), with the primary outcome measure being the MAS score. Cochran's Q test and the I2 statistic were used to assess heterogeneity between studies, and a random-effects model was applied for data synthesis.

Results

A total of 12 RCTs were included in the analysis. The meta-analysis results demonstrated that, compared to the control group, rTMS interventions significantly reduced the MAS score, with a pooled mean difference (MD) of -0.51 (95% confidence interval 0.66 to - 0.36, p < 0.00001). Sensitivity analysis using the leave-one-out method confirmed the robustness of this result. Subgroup analysis indicated that the therapeutic effects of rTMS were consistent across different stimulation protocols (LF-rTMS, iTBS/cTBS), target areas (contralateral M1 region, other brain areas), and stages of stroke (subacute, chronic). Meta-regression analysis revealed that the total number of treatment pulses was not a significant source of heterogeneity, nor was it significantly correlated with treatment efficacy.

Conclusions

rTMS is a promising adjunctive intervention for post-stroke limb spasticity, with its efficacy confirmed across various stimulation parameters and patient populations. However, no significant effect of the total number of treatment pulses on therapeutic outcomes was identified.

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