SYLA develops AI-enhanced prosthetic knees that utilize advanced algorithms for dynamic, adaptive control, mimicking natural leg biomechanics. This system shortens user adaptation time and supports activity flexibility, allowing seamless transitions between walking, running, and climbing. The technology also incorporates smart energy management and personalized profiles to provide accessible, lasting mobility with enhanced stability.
Funding
Funding not disclosed
Founders
Product
Problem
Amputees face challenges with the high costs, lengthy rehabilitation, and frequent replacements associated with traditional prosthetic knees, limiting their access to effective mobility solutions. Current prosthetics often lack the adaptability needed for diverse activities and personalized walking patterns, hindering a seamless and natural experience.
Solution
SYLA develops AI-enhanced bionic prosthetic knees designed to provide amputees with accessible and lasting mobility. The prosthetic knee utilizes an adaptive control system that dynamically adjusts to the user's walking pace, enabling a smooth transition between different activities like walking, running, and climbing without manual adjustments. Its smart energy management system optimizes energy consumption, prolonging battery life and ensuring peak performance. The system also incorporates biosimilar mechanics, mimicking natural leg biomechanics to enhance movement and confidence, while stabilization technology mirrors human balance, reducing the risk of falls.
Target Audience
The primary target audience includes amputees seeking advanced and adaptable prosthetic solutions, as well as healthcare providers and rehabilitation centers focused on improving patient mobility and quality of life.
Features
- AI-based adaptive control system that adjusts to the user's walking pace
- Smart energy management with a recuperation system for prolonged battery life
- Personalized profiles that learn and save preferred walking patterns
- Feedback system that provides insights on gait, progress, and focus areas
- Biosimilar mechanics that mimic natural leg biomechanics
- Stabilization technology that mirrors human balance
- Activity flexibility, supporting diverse activities without manual adjustments
- Lightweight design, weighing 1.5 kg