18-08-2025
ADA MED SUPPLY LIMITED
Article tag: Venous intervention training model,BIX-L61
The venous intervention training model is a highly realistic teaching aid specifically designed for the teaching and skill training of vascular intervention operations, mainly simulating the anatomical structure and puncture touch sensation of the human venous system.
Functional features
1: The model is the upper body of an adult, with a realistic form and authentic texture.
2: Standard puncture position, with clear body surface markings, facilitating operation and positioning.
3: Intravenous intubation
You can practice puncture through the median elbow vein, internal jugular vein, subclavian vein, etc. Correct puncture can cause blood return.
It can simulate difficult intubation.
4: Chemotherapy pump
· Display the path and operation method of the chemotherapy pump embedded in the body.
· Clearly reflect all possible abnormal conditions of the chemotherapy pump embedded in the body: tilting, shifting and flipping of the chemotherapy pump.
You can practice touching the area where the chemotherapy pump is embedded in your body.
Practice disinfection before administration and injection administration.
It is equipped with three different chest muscle modules to imitate the shallow, medium and deep embedded chemotherapy pumps.
5: Show the path and method of subcutaneous central venous puncture and catheterization.
6: It can perform various operations such as drug infusion, fluid replacement, blood transfusion, blood sample collection, heparinization, and nutritional support treatment
Models are usually made of transparent or semi-transparent materials, clearly showing the main venous pathways in the arms, legs or neck, and are equipped with replaceable vascular ducts and circulation simulation systems to reproduce real blood flow and reflux phenomena. Trainees can perform venipuncture, catheter insertion, needle fixation and infusion operations on the model, and practice key skills such as aseptic techniques, needle position selection and Angle control.
Some advanced models also support the simulation of complex interventional operations such as catheter guidance, balloon dilation and catheter removal, which is helpful for cultivating trainees' overall understanding of vascular anatomy and interventional techniques. After use, the model is easy to clean, disinfect and replace the internal vascular components, ensuring the safety and feasibility of repeated training. The venous intervention training model not only plays a significant role in medical education and skills assessment, but also exerts remarkable value in clinical research, training new technologies and enhancing the standardization of operations, providing effective guarantees for reducing patient risks and improving the success rate of operations.