OverviewThis simulation model reproduces the inferior vena cava and the complete lower extremity venous anatomy, including internal/external iliac veins, femoral veins, deep femoral vein, great saphenous vein, popliteal vein, anterior/posterior tibial veins and fibular vein. Vessel ends connect to a circulation circuit; combined with a pulse pump the system simulates temperature, pressure, flow rate and pulse to reproduce venous hemodynamics for testing, imaging and hands‑on training.
Features- Complete lower limb venous anatomy with internal diameters matched to human anatomical sizes. Multiple puncture points provided for left/right subclavian and femoral veins to support clinical practice scenarios.
- Core vascular modules (inferior vena cava, great saphenous vein, popliteal vein) are replaceable to reduce consumable costs and extend product life.
- Supports performance testing, functional demonstration and training for venous interventional devices (venous stents, thrombus filters, delivery systems); compatible with imaging modalities including contrast angiography, CT and DSA.
Specifications- Model: Inferior Vena Cava and Lower Extremity Vein Simulation Model
- PN: PLWZXG004
- Main material: Highly transparent soft silicone, hardness: 30A
- Model dimensions: Length 125 cm; Width 53 cm; Height 24 cm
- Lead time: 15 days
- Origin: Shanghai, China
DrawingMain dimension drawings and images available on request.
FAQ- What scenarios is this product mainly suitable for? Designed for performance testing and functional demonstration of lower limb venous interventional devices (e.g. venous stents, thrombus filters, delivery systems) and for procedural training. Compatible with multiple imaging techniques to assist teaching, verification and validation.
- How to clean and preserve silicone vascular models? Remove the circulation circuit, rinse with clean water and dry with tissue or non‑woven fabric. Replaceable vascular modules can be disassembled and cleaned separately to avoid damage from excessive rubbing. Store the model in a cool, dry, dark and ventilated environment away from high temperatures, sharp objects and chemical solvents to prevent silicone aging, deformation or damage.