AI-powered digital twins for orthopedics
Understand bone healing. Rethink treatment.
OSORA connects patient information, biomechanics and biology to explore how fixation and loading may shape healing over time — for fracture management, interactive education and implant R&D.

A fracture image is a snapshot. Healing is a process.
OSORA models predict how mechanics and tissue development interact over time. This makes it possible to compare scenarios, expose assumptions and discuss expected healing trajectories in context.
One technology. Different questions.
OSsistant Fracture Management
In development
For clinicians and development partners
Patient-specific decision support from treatment planning to rehabilitation.
Case Review Studio
Available for courses
For course leaders
Explore fracture biomechanics through virtual case discussions based on clinical examples.
Implant Development
Project-based collaboration
For implant and medtech R&D teams
Compare implant designs, fixation configurations and loading scenarios with in silico studies.
From case data to a simulated healing trajectory.
Patient information, fracture geometry, fixation and loading define the model. OSORA then follows how mechanics and tissue development interact over time, making it possible to compare scenarios rather than isolated snapshots.

- 01
Define the case
Bring together patient information, fracture geometry, fixation and loading conditions.
- 02
Follow healing over time
Model how mechanics, load sharing and tissue development may change across the healing trajectory.
- 03
Compare and interpret scenarios
Place alternatives side by side, make assumptions visible and discuss the results in context.
Built on research. Applied in collaboration.
OSORA combines scientific foundations with clinical, educational and engineering questions.
Built on published research
Peer-reviewed work and public studies document the simulation methods and the questions they can address.
Developed with clinical and engineering partners
We shape workflows, assumptions and study designs around real clinical and product-development questions.
Applied in teaching and case discussions
Virtual cases help course leaders and participants compare scenarios and make biomechanical reasoning visible.
Insights
Effects of weight-bearing scenarios on bone healing can be revealed by OSORA simulations
How do weight-bearing recommendations affect bone healing? OSORA simulations compare rehabilitation scenarios and their effect on healing progress.
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