Train on ultrasound-guided and blind knee injections with superior anatomical realism and imaging accuracy
Realistic human knee anatomy for lifelike training
Supports ultrasound-guided and blind insertion techniques
Self-healing SimulexUS™ tissue for long-lasting durability
Adjustable fluid volumes simulate various pathologies
Includes refill solution and QuickFill™ system
Train on lifelike anatomical structures, including the quadriceps tendon, ligaments, patella, femur, tibia/fibula, and multiple fat pads—accurately positioned for clinical relevance.
Practice both imaging-guided and palpation-based needle insertions with feedback on probe handling, needle path, and target access.
Simulate diverse clinical scenarios with refillable patellar bursa and suprapatellar space—accessible via QuickFill™ ports for rapid setup.
Blue Phantom’s patented SimulexUS™ tissue supports extensive use with 18–21 gauge needles, minimizing wear and reducing long-term replacement costs.
Achieve excellent image quality across all ultrasound platforms—just like scanning real patients.
Compact and lightweight, this model is ideal for classroom, clinic, or simulation center use with no special storage or maintenance needs.
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Standard Coverage: 1-Year Manufacturer’s Warranty included
The MSK Knee Ultrasound Training Model from Blue Phantom is the world’s first task trainer designed specifically for musculoskeletal (MSK) ultrasound training and knee joint injections. Built using LifeCast™ technology, the model replicates human anatomy with stunning external and internal detail—offering learners and educators a true-to-life platform for mastering ultrasound-guided and blind insertion procedures.
Designed for radiologists, orthopedic surgeons, and sports medicine physicians, this compact and transportable knee model supports core training in transducer manipulation, anatomical identification, and needle visualization for joint aspiration and injection procedures. Constructed with our proprietary SimulexUS™ tissue, it provides exceptional sonographic imaging while allowing repeated needle access without compromising image quality or structure.
Users can adjust the simulated fluid volumes within the patellar bursa and suprapatellar space to mimic various clinical presentations. The model’s preset 15-degree knee flexion can be manually increased by 10 degrees to support varied procedural angles.