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Kinesix VR

Kinesix provides neurorehabilitation services through a virtual reality platform that offers over 300 personalized exercises designed to enhance motor recovery in patients. By utilizing immersive technology, the platform enables therapists to deliver targeted rehabilitation in a safe environment, improving patient engagement and accelerating recovery times.

Montréal, CanadaFounded 2018152K+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Neurological rehabilitation often requires intensive, repetitive exercises to restore motor function, but traditional methods can be labor-intensive for therapists and may lack the engagement needed to motivate patients. Standard rehabilitation settings may not fully replicate real-world scenarios, potentially limiting the transfer of learned skills to daily life.

Solution

Kinesix provides a virtual reality (VR) platform designed to enhance neurorehabilitation by offering personalized and engaging exercises. The platform features over 300 specialized exercises across five modalities, allowing therapists to tailor treatment plans to individual patient needs. By immersing patients in a safe, simulated environment, Kinesix VR aims to improve motor recovery, increase patient motivation, and optimize the therapist-to-patient ratio. The system provides a means to deliver high-intensity treatment, control the pace of rehabilitation, and offer remote services, all while tracking patient progress through detailed metrics.

Target Audience

The primary users are neurorehabilitation centers, hospitals, and clinics seeking to enhance their rehabilitation services with VR technology, as well as occupational therapists, physical therapists, and physicians specializing in neurological rehabilitation.

Features

  • Avatar representation with fully functional hands and fingers for realistic interaction within exercises.
  • Evidence-based VR system designed to increase the effectiveness of motor training.
  • Personalized, task-oriented training with adjustable grip levels to accommodate varying motor abilities.
  • Safe simulation environment with meaningful objects to stimulate mirror neurons.
  • Comprehensive suite of exercises targeting postural control, scapular stability, and voluntary movement patterns.
  • Metrics tracking to monitor patient progress and inform treatment adjustments.
This profile is AI-generated and may contain inaccuracies.