Product OverviewThe model is built from 1:1 clinical CT/MRI imaging data to reproduce lower limb venous anatomy and vena cava structures. The main assembly includes a high-transparency soft silicone vascular module representing peripheral veins and a humanoid plastic base. Optional accessories (pulse pump, temperature‑controlled reservoir) enable realistic simulation of temperature, pressure, flow rate and pulse to reproduce procedural tactile feedback.
Features- 1:1 anatomical replication from clinical imaging data — inner diameters and vessel anatomy (iliac, femoral, popliteal, cava) match clinical dimensions for realistic device handling.
- Modular core vascular segments (iliac artery/vein, femoral artery/vein, popliteal artery/vein) are removable and replaceable to support customized lesion modules (aneurysm, stenosis) and reduce operating costs.
- Compatible with interventional devices (guidewires, catheters, vascular stents) and supports multi-site imaging, endovascular procedures and stent deployment for training, device testing and product demonstrations.
FAQ- What scenarios is this model intended for?
Answer: Suitable for (1) performance testing and evaluation of interventional instruments (guidewires, catheters, stents); (2) hands‑on training for imaging, endovascular procedures and stent placement at multiple peripheral sites (iliac, femoral, popliteal); (3) product function demonstration and promotional display. - Can lesions be customized and are additional devices required?
Answer: The model supports customization of lesion types and sizes (aneurysms, stenosis). Standard supply includes silicone tubing, adapters and hemostatic valves. Optional devices such as pulse pumps and temperature‑controlled reservoirs can be added to simulate blood flow characteristics (temperature, pressure, flow).
Technical Specifications- PN: PLWZXG005
- Main material: High-transparency soft silicone, hardness 30A
- Model length: 125 cm
- Model width: 53 cm
- Model height: 24 cm
- Lead time: 15 days
- Origin: Shanghai, China