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Upper Limb Intelligent Feedback Training System: Efficient Rehabilitation Solution from China Suppliers and Factory
Product Introduction
Upper limb rehabilitation robot using computer virtual technology, combined with rehabilitation medicine theory, the real-time simulation human upper limbs motion law, can be done in a computer virtual environment in patients with multiple joints or single joint rehabilitation training, training system also has the upper weight loss, intelligent feedback, multiple dimension space training, and powerful assessment of the system. It is mainly suitable for patients with upper limb dysfunction caused by stroke, cerebrovascular malformation, severe brain trauma or other nervous system diseases or the recovery of upper limb function after surgery.
Product Features
Low exoskeleton package structure: joint support to protect and promote separatist movement, enhance single joint control, can adjust the resistance of the forearm and upper arm independently.
Design: low one-piece in arm in arm operation more simple
Low built-in laser locator: accurate positioning joint position, ensure safe and effective treatment
Low hand grip strength + vibration feedback stimulation: grip strength & vibra real-time feedback and evaluate training process
Low single joint accurately evaluate:
Low 29 scene interaction: 29 not repeat training game, continuously updated increasing
Low data analysis: a histogram, linear map data summary display contrast with arbitrary two evaluate training results
Scope of Application
Neurological diseases: stroke, brain injury, paraplegia and other causes of upper limb dysfunction;
Low diseases of the musculoskeletal system: upper extremity fractures trauma surgery, bone arthritis, muscle atrophy, etc;
Want to know more about the intelligent feedback training system of the upper limb? (Video or color page)
Frequently Asked Questions
Q. What technology is utilized in the Upper Limb Rehabilitation Robot?
The system utilizes computer virtual technology combined with rehabilitation medicine theory to simulate real-time human upper limb motion laws, allowing patients to conduct training in a computer-generated virtual environment.
Q. Who are the primary candidates for this rehabilitation training system?
It is mainly suitable for patients experiencing upper limb dysfunction resulting from stroke, cerebrovascular malformations, severe brain trauma, other nervous system disorders, or individuals undergoing recovery after upper limb surgeries.
Q. How does the exoskeleton structure enhance upper limb training?
The low exoskeleton structure provides joint support to protect limbs and promote isolated movement. It enhances control over single joints and allows therapists to adjust the resistance of the forearm and upper arm independently.
Q. What safety features are built into the rehabilitation system?
The system features a built-in laser locator to accurately position joint alignments, ensuring safe, targeted, and effective therapeutic sessions.
Q. How does the system display and evaluate training results?
It provides comprehensive data analysis through histograms and linear maps. This allows clinicians to easily summarize, display, and compare training results between any two sessions for progress tracking.





