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Efficacy of a soft robotic exoskeleton for upper-limb rehabilitation in subacute stroke inpatient rehabilitation: a randomised controlled trial

Journal
Journal of neuroengineering and rehabilitation (Q1)
Published
10 September 2026
Study design
Randomized controlled trial
Evidence level
Level 1, High (CEBM 1b)
Authors
Kai Wen Elvina Tay, Pui Kit Tam, Qi Xie, Hwa Sen Lai, Wai Kin Yuen, Xiao Min Lilian Lim, et al.
PMID
42763409
DOI
10.1186/s12984-026-02133-0

Why clinicians should know about it

  • Picked for Rehabilitation (paper of the day, 21 September 2026): Soft robotic glove adjunct shows distal FMA‑UE benefit in stroke

Abstract

BACKGROUND: Soft robotic devices may be a useful adjunct for stroke rehabilitation by providing higher intensity training, while allowing comfort and portability compared to rigid exoskeletons. We evaluated the efficacy of a sensor-assisted soft robotic glove (SSR) during inpatient stroke rehabilitation. METHODS: This assessor-blinded, randomised controlled trial was conducted in 2 inpatient rehabilitation units. Adults aged 21-90 years old, with ischaemic or haemorrhagic stroke and unilateral upper-limb impairment were recruited between July 2023 and May 2025. Participants were randomised to either [1] SSR or [2] supervised Graded Repetitive Arm Supplementary Programme (GRASP) training for up to 15 sessions, 30-45 min/session; 5 days/week for up to 3 weeks. The primary outcome was Fugl-Meyer Assessment of Upper Extremity (FMA-UE). Secondary outcomes included Stroke Upper Limb Capacity Scale, the DuruÖz Hand Index, and Stroke Impact Scale-16 (SIS-16). Outcomes were assessed at baseline (T1), post-intervention (T2) and follow-up at 3 months (T3). RESULTS: Recruitment ceased before the planned sample size was reached due to funding constraints. Therefore, the trial was underpowered to detect the prespecified between-group difference. Of 323 screened individuals, 61 were randomised. 3 participants did not complete T2 assessment resulting in a modified intention-to-treat population of 58 (SSR n = 28, control n = 30). Both groups showed improvement across primary and secondary outcomes, with no statistically significant differences observed between them. In a post-hoc exploratory subgroup analysis with baseline FMA-UE < 35 and ≥ 10 sessions (n = 38), a statistically significant difference in FMA-UE distal sub-score at T2 was observed, favouring the SSR group (mean difference 3.06, 95% confidence interval [CI] 0.02 to 6.09, p = 0.049) but not at T3. A numerically higher proportion of participants in the SSR group achieved minimal clinically important difference value for SIS-16 (77.8% vs. 55.0%, adjusted odds ratio 6.52 (95% CI 1.00 to 42.58, absolute risk difference 22.8% [95% CI -7.2% to 47.4%], p = 0.050) at T2, but did not reach statistical significance. CONCLUSION: Sensor-assisted soft robotic glove training did not demonstrate superiority over supervised GRASP for upper limb function post-stroke. Exploratory subgroup analyses identified a signal suggesting improved distal hand motor recovery in participants with greater baseline impairment with sufficient therapy exposure.

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.