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Robot-assisted gait training for balance, mobility, and gait in Parkinson's disease: a systematic review and meta-analysis

Journal
Frontiers in neurology (Q2)
Published
9 September 2026
Study design
Systematic review / meta-analysis of RCTs
Evidence level
Level 1, High (CEBM 1a)
Authors
Zihao Zhao, Chuanming Xu, Xiupeng Li, Zhiyuan Tan, Jinmeng Zhang
PMID
42780363
DOI
10.3389/fneur.2026.1878057

Why clinicians should know about it

Abstract

OBJECTIVE: This systematic review and meta-analysis evaluated the effects of robot-assisted gait training (RAGT) on balance, functional mobility, walking endurance, and spatiotemporal gait parameters in patients with Parkinson's disease. METHODS: PubMed, Embase, Web of Science, the Cochrane Library, CNKI, trial-registry sources, and supplementary search sources were searched from inception to the final search date. The protocol was retrospectively registered on the Open Science Framework (OSF; https://osf.io/njp39/) during manuscript revision. Randomized controlled trials comparing RAGT with conventional rehabilitation, treadmill training, balance training, medication, or usual care were included. In total, two reviewers independently screened records, extracted data, and assessed risk of bias. Hedges' g and, in parallel, post-intervention mean differences (MDs) in the original clinical units were calculated using random-effects models. Subgroup, sensitivity, publication-bias, and GRADE analyses were conducted where data permitted; meta-regression analyses were treated as exploratory because each outcome included fewer than 10 studies and are reported only in the Supplementary Appendix. RESULTS: A total of 12 RCTs were included. RAGT was associated with better BBS scores (Hedges' g = 1.08, 95% CI: 0.55 to 1.62; MD = 3.49 points, 95% CI: 1.85 to 5.12), shorter TUG time (Hedges' g = -0.47, 95% CI: -0.77 to -0.16; MD = -1.82 s, 95% CI: -2.67 to -0.96), and a longer 6MWD (Hedges' g = 2.21, 95% CI: 0.53 to 3.90; MD = 35.82 m, 95% CI: -0.94 to 72.58). Cadence increased by 4.14 steps/min (95% CI: 1.83 to 6.46), and step length increased by 5.70 cm (95% CI: 0.25 to 11.15). However, BBS, 6MWD, and step length showed substantial heterogeneity, and Egger's tests suggested possible small-study effects or publication bias for several outcomes. CONCLUSION: RAGT may be a promising adjunct to rehabilitation for PD, but the magnitude of benefit is uncertain, and the true effects may be smaller than the pooled estimates. Current evidence should be interpreted cautiously because of small trials, heterogeneous devices and comparators, underreported safety outcomes, risk of bias, and possible publication bias. SYSTEMATIC REVIEW REGISTRATION: https://osf.io/njp39/, identifier (njp39).

Abstract as published, via PubMed.

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For healthcare professionals. The summary is generated by AI from the published abstract, and the evidence level is assigned automatically from the study design on the Oxford CEBM hierarchy. Neither is medical advice. Read the full paper before changing practice.