At JST 3D, we transform traditional CT scans into highly detailed, interactive 3D models, providing surgeons with an advanced tool for precision planning and real-time intraoperative guidance.
Rotate and explore anatomical structures from any angle
Select and deselect key elements (arteries, veins, tumors, surrounding tissues)
Enhance visualization beyond traditional 2D CT scans
Improve surgical accuracy, minimizing risks and optimizing intervention times
Traditional CT scans require mental reconstruction of 2D images into a 3D space, increasing the risk of misinterpretation. With our AI-powered 3D models, surgeons get an instant, clear and dynamic view of complex anatomical structures, reducing uncertainty and improving precision.
JST 3D models can be directly integrated into laparoscopic and robotic surgery platforms, displaying real-time anatomical guidance during surgery. This ensures more precise tumor resections and helps define clear margins while avoiding vascular complications.
Clinical studies confirm that AI-driven 3D models lead to:
Less intraoperative blood loss (better identification of vascular structures)
Lower complication rates (especially hemorrhagic complications)
Fewer emergency interventions & transfusions
Shorter hospital stays = lower costs
of surgeons find 3D models more effective than traditional 2D imaging (Royal College of Surgeons study).
minutes saved on average per surgery using 3D models (Statista study).
saved per surgery due to reduced operating time and complications.
JST 3D models are currently optimized for renal surgery, but their versatility extends to multiple specialties, including:
Better visualization of tumor margins and vascular structures.
Precise mapping of complex blood vessel networks.
Enhanced planning for delicate brain procedures.
Improved tumor localization for targeted resections.
Scalable for multiple specialties, ensuring safer and more efficient surgeries.
| Feature | Traditional 2D Imaging | JST 3D Models |
|---|---|---|
| Visualization | 2D slices requiring mental reconstruction | Complete interactive 3D view |
| Planning Time | Extended time for interpretation | Reduced by up to 60% |
| Intraoperative Use | Limited integration | Direct integration with surgical systems |
| Complication Rate | Standard risk | Reduced by up to 37% |
| Surgery Duration | Standard | Reduced by 62 minutes on average |
AI-powered precision for superior surgical planning
Real-time visualization to enhance intraoperative decision-making
Proven clinical benefits reducing complications and hospital costs