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VerityXR

VerityXR utilizes Extended Reality (XR) technology to provide non-invasive, movement-based therapies for chronic pain management and physical rehabilitation. Their EngaugeXR™ platform enhances patient engagement and clinician productivity by using real-time data analytics and personalized treatment algorithms to improve functional movement and recovery outcomes.

Chicago, United StatesFounded 20189300+ followers
Updated 4 months ago

Funding

$346K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Chronic pain affects millions, impacting mood, sleep, and overall quality of life, while current treatments, including opioids, often fail to provide adequate relief. Traditional rehabilitation methods may not fully address the neurological component of pain, and patient engagement can be a challenge.

Solution

VerityXR offers a non-invasive, drug-free solution for chronic pain management and physical rehabilitation using Extended Reality (XR) technology. The EngaugeXR™ platform combines graded exposure, functional movement rehabilitation, and kinematic data to help clinicians manage musculoskeletal conditions and improve mobility. By providing access to the brain’s neural pathways, VerityXR aims to change the perception and processing of pain through movement-based therapies. The platform enhances patient engagement through immersive, game-like experiences and provides clinicians with objective data and workflow automation to optimize treatment and improve patient outcomes.

Target Audience

The primary users are physicians, physical therapists, and patients diagnosed with neurological, musculoskeletal, or pain conditions requiring physical rehabilitation.

Features

  • Immersive XR environments to motivate patients and improve engagement with rehabilitation exercises
  • Real-time data measurement of range of motion, velocity, and autonomic measures of stress
  • Proprietary algorithms that use physiological signals and kinematic data to personalize and optimize therapy
  • Configurable gaming parameters to tailor the program to the specific needs of each patient
  • Patient analytics, insights, and performance trends to enable data-driven improvements to programs
  • Automated baseline measurements to monitor patient progress
  • Workflow automation to streamline clinician operations and improve patient care
This profile is AI-generated and may contain inaccuracies.