Features
The Kidney Stone Model – EZ Augmented Anatomy is a clinical-grade educational tool designed for healthcare professionals, educators, and students. It visually demonstrates the locations and effects of urinary and kidney stones. This model offers clear anatomical insights, making complex concepts easy to explain and understand.
Transform Kidney Stone Education With Interactive 3D Visualization
Enhance your teaching or patient consultation with the Kidney Stone Model – EZ Augmented Anatomy. The model presents a right kidney at actual size, split open to reveal renal pelvis, calices, pyramids, ureter, and embedded stones at typical sites. The included Augmented Anatomy App automatically recognizes the model, projecting labeled structures in augmented reality, and connects to a comprehensive learning lexicon. Users can access the app for free, with no registration required, on any standard smartphone or tablet. Clearly identify concretions in key locations to help patients and students visualize pathology and intervention points. Every component mounts on a stable base and includes a key card for easy identification during demonstrations.
Features and Benefits
- Life-sized right kidney with detailed internal anatomy
- Exposes renal pelvis, calices, pyramids, cortex, and ureter
- Demonstrates stone locations in upper calix, lower calyx, renal cortex, pyramids, and ureter
- Mounted on a durable base for stability during display
- Includes a key card for anatomical reference
- Augmented Anatomy App enhances learning with real-time AR labeling
- Free, unlimited use of the app without any registration
- App compatible with all common smartphones and tablets
- Learning lexicon with extra online resources
Indications for Use
- Patient education about urinary stones and kidney stones
- Medical and anatomy teaching in clinical, academic, or institutional settings
- Visual aids for urology consultations and surgical planning communication
Size Guide
- Model represents a right kidney at natural size
- Mounted base holds model securely














