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Exoskeleton rehabilitation technology for safe movement practice is designed to support patients in performing controlled, stable, and biomechanically correct movements during rehabilitation therapy. These advanced wearable robotic systems enable clinicians to deliver guided movement training with a strong emphasis on safety, precision, and consistency. Widely implemented in modern rehabilitation clinics, exoskeleton rehabilitation technology enables patients with neurological and orthopaedic impairments to practice movements confidently while minimising the risk of falls, improper joint loading, or compensatory patterns.
By integrating intelligent sensors, adaptive control algorithms, and therapist-defined therapy protocols, exoskeleton rehabilitation technology ensures smooth assistance, controlled resistance, and real-time monitoring throughout each session. This structured approach supports safe motor relearning, gradual strength development, and improved movement control, making it ideal for early-stage rehabilitation and progressive functional training.
Medical-grade exoskeleton rehabilitation technology designed for safe movement practice
Adaptive robotic assistance and resistance to maintain controlled and secure movement
Multi-joint support for hips, knees, and ankles, ensuring biomechanically correct motion
Real-time sensor-based control for smooth, precise, and repeatable movement execution
Adjustable training parameters for structured and progressive safe rehabilitation programs
Therapist-controlled interface for standardised yet patient-specific therapy protocols
Advanced safety systems, including emergency stop and torque limitation
Continuous performance monitoring for objective safety and movement assessment
Stroke rehabilitation for safe gait training and controlled motor relearning
Spinal cord injury rehabilitation for assisted standing and protected walking practice
Neurological rehabilitation for traumatic brain injury, Parkinsonâs disease, and multiple sclerosis
Orthopaedic rehabilitation following joint replacement, fractures, and ligament reconstruction
Post-surgical rehabilitation for early-stage safe mobilisation and movement practice
Safe movement training, balance therapy, and mobility programs in rehab clinics
Enables safe and controlled movement practice during rehabilitation
Reduces risk of injury, falls, and improper joint loading
Enhances neuroplasticity through repetitive, task-specific movement training
Improves balance, coordination, posture, and motor control
Provides objective, data-driven insights into movement quality and progress
Reduces physical strain and fatigue for therapists
Builds patient confidence during early and progressive rehabilitation stages
Supports efficient, scalable, and safety-focused rehabilitation services
System Type: Wearable medical-grade rehabilitation exoskeleton
User Weight Range: Approx. 40â120 kg
User Height Range: Approx. 150â195 cm
Assisted Joints:
Hip: 2 degrees of freedom
Knee: 1 degree of freedom
Ankle: 1 degree of freedom per side
Actuation System: High-torque brushless DC motors with integrated torque sensors
Control System: Intelligent adaptive control with real-time feedback algorithms
Power Supply: Rechargeable lithium-ion battery pack
Battery Backup: Approx. 3â5 hours of continuous clinical operation
Charging Time: Approx. 2â3 hours
Training Modes: Passive, Assisted, Active-Assist, Resistive, Adaptive
Sensor System: IMU sensors, joint encoders, force and torque sensors
Safety Features: Emergency stop button, torque limiters, mechanical braking system
Connectivity: Bluetooth, Wi-Fi, USB data export
Compliance: Medical device certifications (model dependent)
Operating Temperature: 10°C to 40°C
Storage Temperature: â20°C to 60°C
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