smartARM develops a bionic arm that utilizes artificial intelligence and vision technology to enable upper limb amputees to perform natural movements and regain autonomy. By integrating Dexterity OS™, the device adapts to its environment, providing users with intuitive control and enhanced functionality.
Funding
Funding not disclosed

Founders
Product
Problem
Upper limb amputees often face challenges in performing natural movements, limiting their autonomy and ability to interact seamlessly with their environment. Existing prosthetic solutions may lack the intuitive control and adaptability needed for a wide range of daily tasks.
Solution
smartARM is developing a bionic arm that uses AI and computer vision to restore natural movement and enhance autonomy for individuals with upper limb loss. The arm uses Dexterity OS™, an intelligent system that allows the device to perceive and understand its surroundings, enabling intuitive and adaptive control. By integrating visual input with advanced machine learning algorithms, the bionic arm can recognize objects, predict user intent, and execute precise movements. This technology aims to provide a more seamless and natural user experience, allowing amputees to regain independence and perform tasks with greater ease and confidence.
Target Audience
The primary target audience includes individuals with upper limb amputations seeking advanced prosthetic solutions that offer improved functionality and a more natural user experience.
Features
- Dexterity OS™: AI-powered system for understanding and adapting to the environment.
- Computer vision: Enables the arm to "see" and recognize objects.
- Intuitive control: Allows users to control the arm with natural movements.
- Adaptive learning: Continuously improves performance based on user interaction and environmental feedback.