Pulmonary artery anatomical model PLXZXG006
femoral veiniliac veinvena cava

Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava
Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava
Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava - image - 2
Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava - image - 3
Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava - image - 4
Pulmonary artery anatomical model - PLXZXG006 - Shanghai Preclinic Medtech - femoral vein / iliac vein / vena cava - image - 5
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Characteristics

Area of the body
pulmonary artery, femoral vein, iliac vein, vena cava, heart
Application
for cardiopulmonary care
Procedure
training, for healthcare training
Type
adult
Material
silicone
Accessories
with blood vessels
Other characteristics
transparent
Length

Min.: 750 mm
(29.5 in)

Max.: 750 mm
(29.5 in)

Width

Min.: 370 mm
(14.6 in)

Max.: 370 mm
(14.6 in)

Height

Min.: 280 mm
(11 in)

Max.: 280 mm
(11 in)

Description

Product overview
The model is reconstructed from clinical CT/MRI datasets representative of Chinese patients and accurately reproduces the full right atrium, pulmonary artery (including 4–5 branches), inferior vena cava, iliac vein, femoral vein and related anatomy at a 1:1 scale. The anatomical body is produced in transparent soft silicone mounted on a clear acrylic base to support manipulation and visualisation of right heart and pulmonary artery interventional devices such as guidewires, catheters, vascular stents, coils and thrombectomy devices.

Features
  • 1:1 anatomical replication of the right heart and pulmonary artery based on Chinese clinical data; vessel wall hardness and elasticity approximate human tissue. High-transparency silicone (transparency ≥ 90%) enables clear observation of device movement within the vessels, facilitating visualised procedural training.
  • Designed to support core interventional training and device testing: pulmonary angiography, aneurysm procedures, thrombectomy and pulmonary artery stenosis interventions. Compatible with guidewires, catheters, stents, coils and thrombectomy stents; custom aneurysm configurations available on request.

Drawings / images included
Main dimensional drawing and product drawings showing anatomical layout and principal dimensions of the right cardiopulmonary model are supplied for reference.

FAQ (selected)
  • Q: Which right heart/pulmonary artery interventions and device tests does this model support?
    A: Supports training and testing for pulmonary angiography, thrombectomy and pulmonary artery stenosis procedures; compatible with guidewires, catheters, vascular stents, spring coils and thrombectomy stents. Custom aneurysm models of various specifications can be manufactured if required.
  • Q: What additional equipment is required to simulate blood flow? Is installation complex?
    A: Optional accessories such as a pulse pump, temperature-controlled reservoir and power supply can be provided (not included as standard). Blood flow simulation is achieved by connecting model inlet and outlet to tubing; temperature, pressure, flow rate and pulse parameters can be adjusted. Connections are straightforward: attach tubing according to markings, fill with water and lubricant, and verify seals before use. A detailed user manual is included.

Specifications / technical data
  • PN: PLXZXG006
  • Main material: High-transparency soft silica gel, hardness 30A
  • Model length: 75 cm
  • Model width: 37 cm
  • Model height: 28 cm
  • Lead time: 15 days
  • Origin: Shanghai, China

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.