Published on in Vol 12 (2025)
Preprints (earlier versions) of this paper are
available at
https://preprints.jmir.org/preprint/68233, first published
.

Journals
- S Elaklouk A, Ramli R, M Alakklouk S, Rahim N. Design Guidelines for a Game-Based Physical Rehabilitation System: Focus Group Study. JMIR Human Factors 2025;12:e67336 View
- Zhuang M, Chen L, Wang A. Clinical Application of Flexible Lower Limb Exoskeleton in Neurorehabilitation. ITM Web of Conferences 2025;80:03001 View
- Shankar R, Goh Z, Xu Q, Chew E, Sui Geok Chua K. Perceptions, attitudes, and lived experiences of therapists with lower limb robotic exoskeletons in stroke rehabilitation: a systematic review of qualitative studies. Disability and Rehabilitation 2026;48(20):6443 View
- . Exoskeletons for Rehabilitation, Mobility Assistance, Occupational Support, and Human Augmentation: Scoping Review with ☸️SAIMSARA. SAIMSARA Journal 2026;1(3) View
- Calabrò R, Calderone A, Crupi M, Nucifora M, Lanza M, Quartarone A. Implementing Rehabilitation Robotics in Routine Care: A Mapping Review of Service Delivery Models, Implementation Determinants, Strategies, and Real-World Outcomes. Healthcare 2026;14(16):2546 View
- Kaya P, Tekeci E, Hocaoğlu E, Ünal R, Ozkocak G. Effectiveness of a Structured Robot-Assisted Ankle-Foot Sensorimotor Training Program Versus Manual Training in Chronic Stroke: Protocol for an Assessor-Blinded, Parallel-Group Randomized Controlled Trial. JMIR Research Protocols 2026;15:e104766 View
Books/Policy Documents
- MALAWADE M, SHEIKH F. AI‐driven Innovations in Physiotherapy and Oncology 5. View
