Skip to main content
SB

Stride Bionics

Stride Bionics offers powered mobility exoskeletons for neurorehabilitation patients, featuring lightweight actuated frames, sensor‑fusion algorithms, and closed‑loop torque control that adapt assistance to residual motor function. The devices integrate with a clinician‑focused cloud platform that streams gait metrics to dashboards and EHR systems via HL7/FHIR APIs, and are sold with recurring service contracts for maintenance and calibration.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Individuals with neurological impairments often rely on manual wheelchairs or limited assistive devices, which restrict functional mobility and impede participation in daily activities. Clinicians lack readily available, clinically validated powered solutions that can be integrated into neurorehabilitation protocols.

Solution

Stride Bionics delivers intelligent powered mobility devices engineered for neurorehabilitation patients. The hardware combines lightweight actuated frames with sensor‑fusion algorithms that adapt torque output to the user’s residual motor control, enabling smooth, assisted ambulation. Devices are calibrated through a clinician‑driven fitting workflow and can be programmed via a secure cloud portal to match individualized therapy goals. Real‑time telemetry streams gait metrics to the therapist’s dashboard, supporting data‑driven adjustments and outcome tracking. The system complies with medical device standards and integrates with electronic health record (EHR) interfaces through HL7/FHIR APIs, simplifying documentation and reimbursement processes.

Target Audience

Primary customers are orthotists, physical therapists, physiatrists, and neurologists who prescribe powered mobility solutions for patients undergoing neurorehabilitation.

Features

  • Actuated exoskeletal frame with brushless DC motors and closed‑loop torque control for precise assistance
  • Multi‑modal sensor suite (inertial measurement units, force sensors, joint encoders) enabling adaptive gait algorithms
  • Clinician‑focused configuration software with remote firmware updates and patient‑specific parameter profiles
  • Cloud‑based analytics platform that aggregates gait data, generates compliance reports, and supports outcome‑based research
  • HL7/FHIR‑compatible API for seamless export of device data into EHR systems and therapy management tools
  • Modular accessory options (standing support, balance aids, interchangeable footplates) to accommodate a range of neurological conditions
  • Built‑in safety features including automatic fall detection, emergency stop, and redundant power monitoring
  • Service‑contract framework offering on‑site maintenance, calibration, and training for orthotists and rehabilitation teams
This profile is AI-generated and may contain inaccuracies.