Surgiprint provides high-quality 3D surgical models generated from DICOM images using AI algorithms, enabling precise surgical planning and enhanced visualization of complex anatomies. This technology improves surgical outcomes by reducing operation time, minimizing blood loss, and increasing patient satisfaction through tailored pre-operative preparation.
Funding
$100K 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.
Founders
Product
Problem
Traditional methods for surgical planning rely on 2D imaging, which can limit a surgeon's ability to visualize complex anatomies and plan precise procedures. This can lead to longer operation times, increased blood loss, and potentially less satisfactory patient outcomes.
Solution
Surgiprint provides high-definition 3D surgical models derived from standard DICOM medical images using proprietary AI algorithms. These models enable surgeons to visualize patient-specific anatomies with enhanced clarity, allowing for more accurate pre-operative planning and improved surgical outcomes. The 3D models are accessible through a secure link and can be viewed on any device without the need for specialized software. Surgiprint's technology facilitates a deeper understanding of complex structures, reduces surgical uncertainties, and supports customized patient care strategies.
Target Audience
Surgiprint's primary customers are surgeons, hospitals, and medical education institutions seeking to improve surgical planning, enhance patient understanding, and provide advanced training tools.
Features
- AI-powered conversion of 2D DICOM images (CT scans, PET scans, MRIs) into interactive 3D models
- Models accessible via a secure link, viewable on any device without software installation
- High-definition visualization of complex anatomies, including liver, colorectal, thoracic, pancreas, prostate, kidney, bariatric, and gynecology
- Precise measurements and detailed anatomical representations for pre-surgical planning
- Facilitates enhanced patient education by providing a clear visual aid for explaining surgical procedures
- Supports robotic surgery training by offering a realistic and interactive environment
- Streamlined process: clinics upload DICOM images and receive the 3D model within three days