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The Smart Motorized Exoskeleton System is an advanced robotic rehabilitation device designed to assist stroke and paralysis patients in regaining strength, movement, and coordination. Built with state-of-the-art motorized technology and intelligent control algorithms, this exoskeleton supports natural body motion and helps patients perform repetitive limb exercises essential for neurological recovery.
Engineered for upper and lower limb rehabilitation, this device assists patients in walking, arm movement, and muscle activation, reducing therapist workload while improving therapy precision. It enhances neuroplasticity by stimulating the nervous system through guided, controlled, and repetitive motions.
Its AI-powered digital interface allows therapists to monitor patient progress, adjust intensity levels, and customize rehabilitation programs for each individual. Lightweight, adjustable, and ergonomically designed, it provides maximum comfort and safety during therapy sessions.
Ideal for rehabilitation hospitals, physiotherapy centers, and neurotherapy clinics, this Smart Motorized Exoskeleton System offers a revolutionary approach to motor recovery and functional independence.
Motorized exoskeleton system for upper and lower limbs
AI-based control for precision movement
Suitable for stroke and paralysis rehabilitation
Real-time motion tracking and progress monitoring
Adjustable intensity, speed, and support levels
Ergonomic lightweight design for patient comfort
Promotes neural activation and muscle re-education
Ideal for physiotherapy, neuro-rehab, and hospital use Applications
Stroke Rehabilitation
Paralysis Recovery Therapy
Neuro and Spinal Cord Injury Rehabilitation
Physiotherapy and Occupational Therapy Centers
Clinical and Home-Based Rehabilitation Programs
Type: Smart Motorized Exoskeleton System
Operation: Motorized, AI Controlled
Target Areas: Arm, Leg, Shoulder, Hip, Knee, Ankle
Material: Lightweight Alloy Frame
Interface: Digital Touch Display
Power Supply: AC Operated
Usage: Clinical and Hospital Rehabilitation
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