Introducing
A Software as a Medical Device (SaMD) platform consisting of six modules, guiding the patient journey from prevention to treatment and beyond.
"SPINEsim is a disruptive technology aiming to create a patient-specific digital twin, which will help spine care providers understand better and follow over time the biomechanical imbalance of the treated patient. This personalized analysis will also be used in the future to set the treatment objectives."
Pr. Brice Ilharreborde
Pr Othopedic Spine Surgeon,“MDsim’s digital twin is a powerful predictive model for patient-specific, multimodal treatments. It enables me to customize each surgical approach, reducing complications from misalignment and helping to understand failure modes and revision surgeries. SPINEsim also improves communication with my patients. It’s a user-friendly platform that helps patients understand their treatment plans, become more engaged in their care, and appreciate the value of personalized treatment.”
Pr. Richard ASSAKER
Neurosurgeon Spine“SPINEsim platform addresses a critical need in spine surgery by offering high-fidelity, biomechanical simulations that allow for precise preoperative planning. Its ability to integrate patient-specific anatomical data with AI-driven predictions of mechanical failure makes it an invaluable tool for reducing surgical complications and optimizing patient outcomes. As a surgeon, the platform's intuitive interface and real-time simulation capabilities provide the confidence needed to plan complex procedures with greater accuracy, ultimately improving recovery times and lowering the risk of postoperative revisions.”
Pr. Mitsuru YAGI
Orthopedic Surgeon Spine"SPINEsim is revolutionizing spine care by integrating cutting-edge technology with patient-centered solutions. Its patient-specific digital twin enables surgeons to plan complex procedures with precision, reducing complications, predicting failure modes, and improving outcomes. Real-time simulations and AI-driven insights provide confidence in surgical decisions while addressing biomechanical imbalances over time. <br><br> For patients, SPINEsim’s user-friendly platform enhances understanding of treatment plans, fostering trust and engagement. By minimizing risks and optimizing recovery, SPINEsim not only benefits individual patients but also elevates surgical standards, paving the way for a new era of personalized, data-driven spine care."
Dr. Ibrahim OBEID
Orthopedic Surgeon SpineCheck
To create a digital twin of the patient and monitor spine health and posture over time:
- Continuous tracking of posture changes and alignment.
- Analysis of key biomarkers related to spinal care.
- Support for clinicians in long-term spine health management.
Align
To enhance spine surgery planning by providing precise measurements and prediction tools:
- Automatic spino-pelvic parameters
- 3D model reconstruction from patient medical images.
- Suggestions for optimal alignment and spine shape
Balance
To evaluate spine biomechanics and disk mobility, optimize surgical interventions and restore stability:
- Computational modeling of the patient’s biomechanics.
- Comparative analysis of treatment plans.
- Dynamic movement simulations (e.g. flexion, torsion)
Connect
To empower patients, the mobile app supports their care journey from consultation to surgery planning and recovery:
- Access to personalized surgery plans and progress tracking.
- Tools to monitor quality of life and assess pain levels.
- Customized physical recommendations for ongoing care.
Design
To help medical device manufacturers optimizing the design of spinal implants and instruments:
- Support for innovation in surgical instrument design.
- Virtual testing and simulation of screws, rods, and cages.
- Evaluation of device performance under real surgical conditions.
Educate
To provide a virtual environment for students to learn spine surgery planning by simulating real operating room scenarios:
- Interactive surgical planning tool.
- Step-by-step guidance and real-time feedback.
- Simulations of surgery strategies
Hôpital Robert-Debré AP-HP, Paris (France)
Transforming surgery
with advanced features designed to improve surgical planning.
Hi-Fidelity
Patient-Specific, Biomechanics
Smart
Automatic spine alignment, Surgeon-specific suggestions
Easy
Easy to Learn/Use, Immersive (AR/VR)
Efficient
Powered by AI
CHU Lille (France)