This study aims to compare the effects of telerehabilitation based motor relearning program and telerehabilitation based conventional physical therapy on motor function and balance in stroke patients.
Inclusion Criteria: * Adults aged 40-70 years.
Exclusion Criteria: * MMSE score <24 or severe cognitive impairment.
imran.amjad@riphah.edu.pk+923324390125
Blinding
Participants in this arm will receive a structured Motor Relearning Program delivered through telerehabilitation via secure video conferencing. The intervention will consist of task-specific, goal-oriented exercises focusing on trunk control, balance, functional transfers, gait training, and coordination. Sessions will be conducted three times per week for six weeks, with each session lasting 45-60 minutes under the remote supervision of a physiotherapist.
Participants in this arm will receive conventional physical therapy delivered through telerehabilitation via secure video conferencing. The intervention will include range-of-motion exercises, stretching, strengthening, balance training, gait exercises, and functional mobility activities. Sessions will be conducted three times per week for six weeks, with each session lasting 45-60 minutes under the remote supervision of a physiotherapist.
MRP and PNF Effect on Upper Limb Motor Performance and Quality of Life in Sub-acute Stroke
The Effect of Motor Learning on Balance, Mobility and Performance of Activities of Daily Living Among Post-Stroke Patients
Motor Relearning Program and Aerobic Exercise in Postural Stability and Lower Limb Function in Subacute Stroke Patients
Effects of Motor Relearning Program Versus Proprioceptive Neuromuscular Facilitation on Balance and Gait in Stroke
Comparison of Motor Relearning and Neurodevelopmental Therapy in Stroke Patients
Tele-Rehabilitation vs Conventional Rehabilitation for Cognitive Improvement in Stroke Survivors.
Comparison of Tele-rehabilitation Versus In-clinic Rehabilitation for Upper Limb Motor Function Stroke Patients
Comparative Effects of Telerehabilitation and Clinic Based Constraint Induced Movement Therapy on Upper Limb Function in Sub-Acute Stroke Patients