Preclinic Medtech, Your Reliable Medical Models Supplier!
Preclinic Medtech is a high-tech company dedicated to the development and promotion of high-simulation medical models.
| Features |
|
| PN | PLXZXG004B |
| Main Material | Highly transparent soft silica gel, hardness: 30A |
| Product Size | Model length: 75 cm |
| Model width: 37cm | |
| Model height: 28 cm | |
| Lead Time | 15 days |
| Origin | Shanghai, China |
Q: What are the core new features of this model compared to Type A? What valve replacement related training is supported?
A: Training on biological valve replacement and mechanical valve replacement for the four major heart valves (aortic valve, mitral valve, pulmonary valve, tricuspid valve) has been added to the core, while retaining the full interventional surgical coverage capability of type A. Specific support for aortic valve biological/mechanical replacement surgery, mitral valve biological/mechanical replacement surgery, pulmonary valve biological/mechanical replacement surgery, tricuspid valve biological/mechanical replacement surgery, and simulation of implantation operations for the four major artificial valves.
Q: Does the valve size of the model meet clinical standards? Can it meet the simulation training needs of different patients?
A: The size of the model valve is designed based on clinical data from Chinese people and conforms to common clinical size specifications; Simultaneously supporting the replacement of complete heart chambers and customized lesion modules to meet personalized surgical planning and rehearsal needs.
Q: Is the model suitable for DSA imaging guided training?
A: The main body of the model is made of highly transparent (transparency ≥ 90%) food grade silicone, which is non-toxic, odorless, and can provide authoritative testing certificates. The material is transparent to X-rays and fully suitable for operation training under DSA imaging guidance
Preclinic Medtech, Your Reliable Medical Models Supplier!
Preclinic Medtech is a high-tech company dedicated to the development and promotion of high-simulation medical models.