Uploaded September 2026 | Updated September 2026, 3 hours ago
**StructAnatomy** explores how interactive 3D models can improve the structured documentation of pain and physical complaints.
Patients can mark painful areas directly on a three-dimensional body model and complement them with information such as pain intensity, quality, and frequency. The application automatically maps these markings to relevant anatomical regions, including nerve regions and dermatomes, providing a structured representation that can support communication between patients and healthcare professionals.
The collected information is converted into an OpenEHR-compliant data structure, laying the foundation for future integration into medical information systems.
This project demonstrates how interactive 3D visualization can complement conventional two-dimensional approaches and support more precise and structured documentation of patient-reported pain.
This work was developed as part of a Bachelor Thesis at **Bern University of Applied Sciences (BFH)**.
**StructAnatomy** explores how interactive 3D models can improve the structured documentation of pain and physical complaints.
Patients can mark painful areas directly on a three-dimensional body model and complement them with information such as pain intensity, quality, and frequency. The application automatically maps these markings to relevant anatomical regions, including nerve regions and dermatomes, providing a structured representation that can support communication between patients and healthcare professionals.
The collected information is converted into an OpenEHR-compliant data structure, laying the foundation for future integration into medical information systems.
This project demonstrates how interactive 3D visualization can complement conventional two-dimensional approaches and support more precise and structured documentation of patient-reported pain.
This work was developed as part of a Bachelor Thesis at **Bern University of Applied Sciences (BFH)**.










