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MEDIVIS

Medivis develops augmented reality software that transforms 2D medical imaging, such as MRI and CT scans, into real-time 3D visualizations for surgical applications, enhancing precision during procedures. This technology improves surgical outcomes and reduces costs for medical institutions by enabling faster access to critical patient data and facilitating better planning and navigation.

East New York, United StatesFounded 20163720K+ followers
Updated 20 months ago

Funding

$24.3M 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

Surgeons rely on traditional 2D medical imaging, such as MRI and CT scans, which can be difficult to interpret and translate into the 3D space of the operating room. This can lead to increased surgical time, reduced precision, and potentially less favorable patient outcomes.

Solution

Medivis develops augmented reality (AR) software that transforms 2D medical images into interactive, real-time 3D visualizations. These visualizations are superimposed onto the patient's body during surgery, providing surgeons with enhanced anatomical awareness and guidance. The SurgicalAR platform facilitates pre-operative planning, real-time navigation, and improved precision during complex procedures. Medivis also offers AnatomyX, an AR-based 3D learning platform designed for medical education, enabling interactive and immersive anatomy instruction. The software integrates with existing hospital PACS systems, ensuring secure and HIPAA-compliant access to patient data without storing PHI in the cloud.

Target Audience

The primary target audience includes surgeons across various specialties (neurosurgery, orthopedic surgery, etc.), medical institutions, and medical schools seeking to enhance surgical precision, improve patient outcomes, and advance medical education.

Features

  • SurgicalAR: FDA-cleared software that converts DICOM images (MRI, CT scans) into real-time 3D holographic renderings
  • Body Navigation: Ultrasound and augmented reality module for image-guided interventions (not yet commercially available)
  • Cranial Navigation: Pin-less workflow with full range head mobility and multiple registration techniques (pending FDA 510(k) clearance)
  • Spine Navigation: Compatible with a range of surgical equipment for pedicle screw placement (pending FDA 510(k) clearance)
  • AnatomyX: 3D learning platform for medical education with highly-detailed, anatomically accurate datasets
  • On-premise IT deployment: Patient data remains within the hospital firewall, ensuring HIPAA compliance
  • PACS Integration: Seamless and secure integration with existing Picture Archiving and Communication Systems
  • Rapid Hologram Generation: Patient search to 3D holographic rendering in approximately 10 seconds
This profile is AI-generated and may contain inaccuracies.