Area of research
Rehabilitation · Psychiatry and Mental health
Research interest
Research interests include Physical medicine and rehabilitation, Medicine, Stroke (engine), Rehabilitation, Physical therapy, and Neurorehabilitation.
Telerehabilitation for Neurological Motor Impairment: A Systematic Review and Meta-Analysis on Quality of Life, Satisfaction, and Acceptance in Stroke, Multiple Sclerosis, and Parkinson’s Disease
Neurophysiological, balance and motion evidence in adolescent idiopathic scoliosis: A systematic review
Effectiveness of robot-assisted arm therapy in stroke rehabilitation: An overview of systematic reviews
Effects of robotic upper limb treatment after stroke on cognitive patterns: A systematic review
Cognitive telerehabilitation in neurological patients: systematic review and meta-analysis
Systematic review of guidelines to identify recommendations for upper limb robotic rehabilitation after stroke
Virtual Reality and Physiotherapy in Post-Stroke Functional Re-Education of the Lower Extremity: A Controlled Clinical Trial on a New Approach
Upper Limb Robotic Rehabilitation for Patients with Cervical Spinal Cord Injury: A Comprehensive Review
Robot-Assisted Upper Limb Training for Patients with Multiple Sclerosis: An Evidence-Based Review of Clinical Applications and Effectiveness
Robot-assisted arm therapy in neurological health conditions: rationale and methodology for the evidence synthesis in the CICERONE Italian Consensus Conference
Upper Limb Robotic Rehabilitation for Patients With Cervical Spinal Cord Injury: A Comprehensive Review
Virtual Reality for Upper Limb Rehabilitation in Subacute and Chronic Stroke: A Randomized Controlled Trial
Feasibility and efficacy of cognitive telerehabilitation in early Alzheimer’s disease: a pilot study
Virtual reality for the rehabilitation of the upper limb motor function after stroke: a prospective controlled trial
Haptic-Based Neurorehabilitation in Poststroke Patients: A Feasibility Prospective Multicentre Trial for Robotics Hand Rehabilitation
Muscle synergy patterns as physiological markers of motor cortical damage