
معرفی
Cyril Duclos is a Full Professor and Director of Graduate Programs in Rehabilitation Sciences at the School of Rehabilitation, Université de Montréal. He is affiliated with the Interdisciplinary Research Centre in Rehabilitation (CRIR) and the University Institute for Rehabilitation in Physical Disabilities of Montreal (IURDPM), where he conducts cutting-edge research in motor control and neurorehabilitation.
- Ph.D. in Neurosciences, University of Aix-Marseille I and University of Montreal (2006)
- Advanced Studies Diploma in Physiology and Biomechanics, University of Paris-X (2002)
- Master’s and Bachelor’s in Cognitive Sciences, University of Aix-Marseille I (2001, 2000)
- State Diploma in Masseur-Kinesitherapy, Institute of Training in Masso-Kinesitherapy of Orléans, France (1998)
His research focuses on balance control, proprioception, gait analysis, and rehabilitation technologies, particularly in post-stroke and spinal cord injury populations. He employs biomechanical analysis, inertial sensors, and localized muscle vibration to enhance motor recovery. His work bridges clinical practice and neuroscience, aiming to translate findings into effective rehabilitation strategies.
The recent publications highlight a strong trend in proprioceptive stimulation, gait symmetry, virtual reality integration, and perturbation-based balance training. His studies often combine experimental designs with systematic reviews, demonstrating both innovation and scientific rigor across neurorehabilitation and biomechanics.
- FSI-SSS/MEDTEQ: Clinical recommendations for post-stroke rehabilitation intensity
- CRSNG-Découverte: Kinematic-specific proprioceptive stimulations in gait control
- Osseointegration in lower limb amputees
- Unpredictable disturbances during walking to improve balance
Cyril Duclos leads a dynamic research program, supervises graduate students, and collaborates with multidisciplinary teams to advance rehabilitation science. His lab at CRIR integrates clinical, technological, and biomechanical approaches to improve mobility and independence in individuals with neurological impairments.



