Stroke is a leading cause of long-term disability worldwide, with upper-limb impairment representing a major determinant of functional limitation and reduced independence. Conventional rehabilitation approaches are often limited by accessibility, intensity, and long-term adherence, highlighting the need for innovative, home-based solutions.
This study aims to evaluate the effectiveness of a personalized robotic telerehabilitation program for upper-limb recovery in individuals with post-stroke motor impairment. The intervention combines a wearable robotic device with a virtual reality-based platform, enabling patients to perform structured, task-oriented exercises in a home environment under remote supervision.
Participants will be allocated to either a robotic-assisted telerehabilitation program or a control condition based on virtual reality-based rehabilitation alone. Motor recovery will be assessed using standardized clinical scales, including the Fugl-Meyer Assessment for Upper Extremity (FMA-UE), along with measures of functional performance, patient-reported outcomes, and treatment adherence.
By integrating robotic assistance with telemedicine, this study seeks to enhance rehabilitation intensity, improve patient engagement, and facilitate continuity of care beyond traditional clinical settings. The results are expected to support the development of accessible, personalized rehabilitation pathways for individuals with stroke-related upper-limb disability.