OSORA develops AI-powered digital twins for orthopedics to provide simulation-driven preventive analytics for musculoskeletal disorder treatment. The platform offers improved transparency of the healing process, evaluation of implant-bone connection, and quantification of recovery over time. This technology supports clinicians with patient-specific planning and accelerates implant development through virtual physiological testing.
Funding
Funding not disclosed
Founders
Product
Problem
Complications during bone healing, such as delayed union or non-union, affect a significant percentage of patients, leading to prolonged immobilization, extended treatment, and potential permanent disability. Clinicians lack tools to proactively identify optimal treatment paths and predict healing outcomes in complex fracture cases.
Solution
OSORA provides AI-powered digital twins for orthopedic fracture management, offering simulation-driven preventive analytics to improve treatment results and patient well-being. The platform enables clinicians to visualize and quantify the healing process, evaluate implant-bone connection and load-bearing capacity, and test treatment approaches in a risk-free environment. By augmenting doctors’ decision-making with patient-specific planning, OSORA enhances surgical planning with predictive insights into healing success over time. This allows for adjusted post-operative care, potentially reducing the overall duration of treatment and minimizing complications.
Target Audience
The primary target audience includes orthopedic surgeons, medical professionals involved in fracture management, and implant developers seeking to streamline product development through virtual testing.
Features
- Patient-specific bone healing simulation based on AI and digital twin technology
- Visualization and quantification of the bone healing process
- Evaluation of implant-bone connection and load-bearing capacity
- Virtual physiological testing for implant development and optimization
- Identification of optimal treatment paths and early detection of complications
- WebApp for simulation and assistance with the generation of digital twins
- Integration of biomechanics for intramedullary nailing and plate osteosynthesis