Vea provides a platform for the rapid 3D visualization and analysis of medical data (DICOM), enabling precise measurements and custom implant design for complex pathologies such as congenital heart diseases. By integrating virtual reality and desktop interfaces, Vea enhances anatomical understanding and streamlines the simulation process for improved surgical planning.
Funding
Funding not disclosed
Founders
Product
Problem
Analyzing medical imaging data, particularly DICOM files, for complex pathologies like congenital heart diseases often requires time-consuming manual processes and may lack the precision needed for accurate measurements and implant design. Traditional methods can also limit anatomical understanding and the ability to simulate surgical procedures effectively.
Solution
Vea provides a software platform that enables rapid 3D visualization and analysis of medical data, facilitating precise measurements and custom implant design. The platform supports both virtual reality and desktop interfaces, allowing users to explore anatomical structures in detail and enhance their understanding of complex pathologies. Vea streamlines the simulation process, enabling clinicians to simulate procedures in minutes and improve surgical planning for congenital heart diseases, orthopedic procedures, neurosurgery, and oncology. The software integrates seamlessly into existing workflows, turning DICOM data into detailed 3D visualizations for accurate analysis and verification against traditional grayscale imaging.
Target Audience
Vea is designed for use by physicians, surgeons, medical researchers, and educators who require detailed analysis, measurement, and simulation capabilities for complex pathologies.
Features
- Rapid 3D visualization of DICOM data, enabling instant exploration of anatomy in three dimensions
- Precise measurement tools derived directly from DICOM data, cross-verifiable with MPR views
- Customizable implant sizing tools, allowing users to create implants or integrate existing models
- Virtual reality imaging for enhanced productivity and anatomical understanding
- 4D imaging for dynamic visualization of the heart’s phases throughout the cardiac cycle
- Specialized modules for congenital heart diseases, orthopedics, neurosurgery, and oncology
- Compatibility with PACS viewers for streamlined workflows
- Offline operation to ensure complete data security, with optional internet access for application updates
- Support for CT, MR, and 3D US modalities for 3D reconstructions
- Import of custom implant models in STL/OBJ formats