BioXtreme Rehabilitation Robotics is instilling new dexterity for stroke patients. Using a patent-protected groundbreaking Error Enhancement technology, we developed a robotic system for upper limb motor rehabilitation. Our product, deXtreme, preforms automatic rebuild of motion range and capability. Based on unique robotic system that applies Error Enforcement forces, BioXtreme technology helps reprogramming the mind for extreme performance.



Our Representatives

Hilla Hoffman

Marketing Manager, BioXtreme Ltd.

Marketing Manager

BioXtreme Ltd.

BioXtreme Rehabilitation Robotics is instilling new dexterity for stroke and other neuro injuries patients. Using a patent-protected groundbreaking Error Enhancement technology, BioXtreme...

Tamar Moyal

Chief Sales Officer, Bio-Xtreme

Chief Sales Officer

Bio-Xtreme

BioXtreme Rehabilitation Robotics is instilling new dexterity for stroke and other neuro injuries patients. Using a patent-protected groundbreaking technology, BioXtreme has developed ...

Company Solutions

deXtreme: The Next Movement in Post-Stroke Rehabilitation Robotics

How It Works

Unique robotic system applies motor error enhancement forces in a combined VR environment to restore and rehabilitate motion and dexterity. The enhanced error forces stimulate an adaptive corrective response from the patient, which leads to the regulation of the system until the desired trajectory is accomplished by the patient.

The process shortens upper limb therapy time by up to 50% and patients achieve 100% additional motor improvement compared to traditional therapy methods.

Validation & Results

  • Three clinical trials have been completed in Israel and delivered the following results: Neurorehabilitation time for stroke patients shortened by up to 30%-50%; Motoric results improved by the same ratio
  • A fourth clinical trial is on-going in the Netherlands.
  • deXtreme 3.1 is FDA and CE registered.
  • BioXtreme singular methodology and technology are globally patent protected.

Singular Rehabilitative Technology for Upper Limb Therapy

The system is based on a unique combination of software (error enhancement algorithms), hardware and complex robotic components - Motors to enable controlled movements and error enforcement and enhancement in 3 dimensions; sensors to detect patients motor error and correct trajectory; and a realtime control system for commanding the motors, based on calculated measured data and the error enhancement algorithm outcomes.

The system is user friendly for both patient and therapist.

Looking For

  • Investors
  • Distributors
  • Healthcare providers
  • Potential strategic partners
  • KOL in neurorehabilitation