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Published on in Vol 12 (2025)

Preprints (earlier versions) of this paper are available at https://preprints.jmir.org/preprint/78091, first published .
Close-up of hands operating a futuristic white and orange wheelchair joystick with a "STOP" button.

Effects of Technology-Assisted Rehabilitation After Spinal Cord Injury: Pilot Randomized Controlled Crossover Trial

Effects of Technology-Assisted Rehabilitation After Spinal Cord Injury: Pilot Randomized Controlled Crossover Trial

Journals

  1. Wunderlin C, Bürgisser F, Gemperli A, Perret C, Widmer M. Effectiveness of Robot-Assisted Versus Conventional Occupational Therapy on Changes in Upper Extremity Function After Cervical Spinal Cord Injury (Armeo X-over Trial): Study Protocol of a Randomised Crossover Trial. Methods and Protocols 2026;9(2):31 View
  2. Zheng H, Yao B, Huang J, Liu S, Le H. Letter to the Editor: Regarding“Arm-hand training strategies and therapy dose dimensions during the subacute rehabilitation of people with cervical spinal cord injury: a longitudinal observational study”. Spinal Cord 2026;64(3):209 View
  3. Baldock M, Caggiari S, Capozio A, Lunn D, Gawne F, Delis I, Astill S. End-Effector Robotic Rehabilitation After Spinal Cord Injury: A Systematic Review of Devices, Operational Characteristics Used, Outcome Measures, and Rehabilitation Effectiveness. Bioengineering 2026;13(10):1138 View
  4. Xie M, Jiao M, Duan Z, Li J, Zhu Y, Zhang B, Wen F, Long J. Effects of virtual reality and gamified digital rehabilitation on functional recovery in individuals with Spinal Cord Injury: a systematic review and Bayesian multilevel meta-analysis. Frontiers in Neurology 2026;17 View