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Augmented Anatomy

ARtery3D is an augmented reality application that visualizes individual patients' arterial anatomy to enhance the accuracy of filler injections and minimize complications. By providing precise anatomical mapping, the app reduces pain and bruising during procedures, improving overall patient safety and experience.

Brussels, BelgiumFounded 20188700+ followers
Updated 3 months ago

Funding

$230K 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

Accidental injection of cosmetic fillers into facial arteries can cause vascular occlusion, leading to serious complications such as skin necrosis or blindness. Current injection techniques lack precise visualization of individual arterial anatomy, increasing the risk of adverse events during these procedures.

Solution

ARtery3D is an augmented reality application that enhances the safety and accuracy of filler injections by visualizing a patient's unique arterial anatomy. Using a mobile device or MRI scan, the application generates a 3D map of the patient's facial arteries, allowing practitioners to identify and avoid high-risk zones. This precise anatomical mapping reduces the likelihood of vascular complications, minimizes pain and bruising, and improves overall patient outcomes. The application integrates into existing clinical workflows, providing real-time guidance during the injection process and creating a digital patient record for tracking treatment progress.

Target Audience

The primary target audience includes cosmetic surgeons, dermatologists, and other medical professionals who perform facial filler injections and seek to improve patient safety and treatment accuracy.

Features

  • Augmented reality visualization of individual patient's arterial anatomy
  • Face scan through mobile or MRI
  • Identification of high-risk zones to avoid during filler injections
  • Dynamic visualization that adapts to facial expressions
  • Digital patient record creation for tracking changes and evolutions
  • Adjustable depth visualization using a color-grading scale and slider
  • Compatibility with one-handed and two-handed injection techniques
This profile is AI-generated and may contain inaccuracies.