ZEPU-AI3 LOWER EXTREMITY FEEDBACK TRAINING AND EVALUATION SYSTEM
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Product Introduction
LOWER EXTREMITY FEEDBACK
TRAINING AND EVALUATION SYSTEM
ZP-AIGen Lower Extremity
ZEPU-AI3
LOWER EXTREMITY FEEDBACK TRAINING
AND EVALUATION SYSTEM
ZP-AIGen Lower Extremity
ZEPU-AI3
Scope of application
Scope of application
Recovering of walking function in nervous system diseases.
Spinal cord injury, cerebral stroke, TBI and other common diseases.
Rehabilitation of lower limb function in postoperative and long-term bedridden patients.
Promote balance and develop lower limb muscle strength and endurance.
Pain relief and improvement of dyskinesia in bone and joint diseases.
Osteoarthritis, rheumatoid arthritis, Joint replacement and postfracture surgery.
Prevention and intervention of disuse muscular atrophy.
Prevent physiological function weakness and muscle volume recovery.
AWAKENING REHABILITATION POTENTIAL AND ASSIST IN GAI REMODELING
AWAKENING REHABILITATION POTENTIAL AND ASSIST IN GAI REMODELING
Ultra-early lower extremity interventional rehabilitation provides a step-by-step clinical rehabilitation path from lying to sitting to standing. Ideal zero- or low-weight step training provides patients with the best solution for movement maintenance and gait recovery.
Al Intelligent Learning
Intelligently analyze the recovery process of patients and push the best treatment options as needed.
Panoramic sound entertainment enjoy rehabilitation.
A stand-alone 55 in big screen employed wireless transmission.The scenario interaction protocol is open to download for direct use from third-party development games.
The upper limb storage handrail
can be adjust-ed by 0 -50cm, taking into account the safety protection of the patient's upper arm.
Pedal is electrically driven
0-26cm retractable distance, pedals automatically reach the sole.
Convenient choice of three postures of "lying-sitting -standing"
The multi position ergonomic curve bed provides a continuous and comfortable rehabilitation experience from lying position to sitting position to standing position.
The guiding force can be adjusted
The guiding force can be adjusted in real time to provide patients with free switching of passive, power assisted and active modes.
Key words:
AI rehabilitation robot
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