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apoQlar medical

The startup develops a mixed reality platform that transforms medical images and clinical workflows into an interactive three-dimensional environment for surgical applications. This technology enhances the precision of surgical procedures and improves the educational experience for medical professionals, ultimately leading to better patient outcomes.

Hamburg, GermanyFounded 2017665K+ followers
Updated 3 months ago

Funding

$10.7M 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

Traditional methods of surgical planning, medical imaging interpretation, and medical training often rely on 2D representations, limiting spatial understanding and collaboration. Conventional approaches can also lack the immersive experience needed for effective learning and preparation for complex procedures.

Solution

apoQlar medical offers the HoloMedicine® platform, a mixed reality solution that transforms medical images and workflows into interactive 3D environments. This platform enhances surgical planning by providing surgeons with 3D hologram imaging, segmentation models, and trajectory planning tools. HoloMedicine® also delivers immersive learning environments for medical training through VR and MR, simulating real-life clinical scenarios. The software operates across various devices and cloud platforms, facilitating remote collaboration and improved patient education.

Target Audience

The primary users are surgeons, medical students, registrars, fellows, and medical training institutions seeking advanced tools for surgical planning, enhanced medical imaging interpretation, and immersive medical training.

Features

  • 3D reconstruction software to verify the accuracy of structures and relationships between tumors and critical areas
  • Surgical planning tools using 3D CT and MRI reconstructions for precise anatomical interpretation
  • VR and MR environments for simulating clinical scenarios
  • AI-powered personalized learning experiences
  • Remote collaboration capabilities for surgical planning and training
  • Integration of real-world clinical experiences with virtual tools
  • Support for learning and practicing complex procedures in realistic environments
This profile is AI-generated and may contain inaccuracies.