01 Product Introduction
The lower limb exoskeleton rehabilitation robot is designed for people with lower limb motor dysfunction. It is an innovative rehabilitation device that integrates advanced sensing technology, intelligent control algorithms and ergonomic design. It can simulate the correct functional gait of the human body, assist patients to achieve independent walking through different training modes, and inhibit abnormal gait. Through center of gravity control, mechanical leg drive, and enhanced feedback mechanism for ground walking, it accelerates the reconstruction of patients’ neural pathways and meets the rehabilitation needs of people with lower limb motor dysfunction at different functional stages.
02 Product Highlights
Multi-mode intelligent training:
The lower limb exoskeleton rehabilitation robot A13-M accurately simulates the natural gait of the human body through various walking training modes such as passive, active-passive, and active, helping patients gradually establish the correct walking pattern and effectively inhibiting the occurrence of abnormal gait.
Reinventing the scientific gait:
With the help of center of gravity control, mechanical leg drive and enhanced feedback mechanism of ground walking, A13-M can accelerate the reconstruction process of patients’ neural pathways, promote the recovery of neural connections between the brain and lower limbs, and lay the foundation for the full recovery of walking function.
Intelligent personalized adjustment:
It provides personalized settings such as electric adjustment of leg length, manual adjustment of hip width and spring weight reduction system to ensure that every patient can enjoy the rehabilitation training program that suits him best.
Manual steering system:
During the ground contact training, patients can use the hand-controlled joystick to adjust the walking direction in real time, and realize flexible operations such as turning left and right. This “think and act” feedback mechanism allows patients to feel the control over their bodies and significantly improve their enthusiasm for rehabilitation.
Security protection mechanism:
The built-in spasm protection function can respond quickly when the patient’s muscles have abnormal contractions, ensuring the safety of the recovery process.
03 Functional Details
User management system: the starting point of personalized rehabilitation
User account/scan code login system provides the data foundation for personalized rehabilitation. Doctors or rehabilitation therapists can quickly retrieve patients’ historical training records and evaluation reports through background data and tailor training plans for them.
Training mode selection: covering the entire rehabilitation cycle
Adjust leg length according to the patient’s height, select training mode (touching the ground/not touching the ground, passive/active, etc.), and set parameters such as walking speed, lifting height, and training duration.
1. Touch/No Touch Training: Flexibility to Adapt to Rehabilitation Stages
2. Passive walking training model: the cornerstone of rebuilding motor memory
3. Active and passive walking training mode: transition from “following” to “leading”
4. Active walking training mode: the final step towards independent walking
One-touch training: easy to use
Click the “Start” button on the screen or push the hand controller to start for 3 seconds, and the robotic leg will run according to the set program. During the training process, you can adjust the direction or pause at any time using the hand controller.
04 Indications
Nerve injury rehabilitation :
— Patients with walking disorders caused by stroke, spinal cord injury (SCI), cerebral palsy, Parkinson’s disease, etc.
— People with muscle wasting/weakness, people with muscular dystrophy, motor neurone disease (ALS) or myasthenia gravis.
Postoperative recovery :
— Patients with limited lower limb mobility due to surgery or trauma.
05 Core advantages
Let patients experience normal walking patterns, maintain joint mobility, prevent joint contracture, reshape the nervous system, promote sensory input, and accelerate neural plasticity reconstruction.
Patients regain dignity through upright walking, effectively relieve depression and anxiety, and significantly improve patients’ belief in recovery and their enthusiasm for participating in training.





















