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◆ Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association2026-08-06

Effects of Brain-Computer Interface-Based Training on Post-Stroke Lower Limb Rehabilitation: A Systematic Review and Meta-Analysis of Randomized Controlled Trials.

Xingyu Liu, Peng Huang, Linjie Wu, Lifei Cai

一句话结论 · In one sentence

BCI-based training effectively improves lower-limb motor recovery after stroke. Subgroup analyses suggested that a moderate total dose (401-800 minutes) combined with 20-40-minute sessions may represent a potentially optimal regimen, although these findings are based on limited RCTs and require confirmation in larger studies.

原始摘要(英文原文)· Original abstract
BACKGROUND: Lower-limb motor dysfunction after stroke severely compromises mobility and quality of life. Brain-computer interface (BCI) technology, which employs a "central-peripheral-central" closed-loop to promote neuroplasticity, offers a promising rehabilitation approach. However, its optimal dosing parameters remain unclear. OBJECTIVE: This study aimed to evaluate the efficacy of BCI-based training on lower-limb motor function, balance, walking capacity, and activities of daily living (ADL) after stroke, and to explore the impact of total training dose, session duration, and stroke phase. METHODS: We systematically searched major databases for randomized controlled trials (RCTs) published up to April 2026. All included studies were RCTs. Methodological quality was assessed using the PEDro scale. A meta-analysis was conducted using RevMan 5.4 to calculate mean differences (MD) and 95% confidence intervals (CI). RESULTS: Ten RCTs involving 366 participants were included. BCI training significantly improved lower-limb motor function (Fugl-Meyer Assessment for Lower Extremity: MD = 2.38, 95% CI 1.72 to 3.04, P < 0.00001). Although this mean difference is below the anchor-based Minimal Clinically Important Difference (MCID) of 6 points reported for chronic stroke populations, it represents a statistically robust and consistent improvement across RCTs, suggesting potential clinical relevance, particularly in subacute patients or specific intervention subgroups. CONCLUSIONS: BCI-based training effectively improves lower-limb motor recovery after stroke. Subgroup analyses suggested that a moderate total dose (401-800 minutes) combined with 20-40-minute sessions may represent a potentially optimal regimen, although these findings are based on limited RCTs and require confirmation in larger studies.
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Effects of Brain-Computer Interface-Based Training on Post-Stroke Lower Limb Rehabilitation: A Systematic Review and Meta-Analysis of Randomized Controlled Trials. — 科研速览 Science Skim