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Heart Valve Frame

Heart Valve Frame

Home > Products > Precision Medical Treatment > Heart Valve Frame
Heart Valve Frame

Heart Valve Frame

The Heart Valve Frame is a precision-engineered scaffold made from biocompatible nitinol or titanium, providing stable support for prosthetic valve leaflets. Designed for surgical and transcatheter procedures, it ensures secure anchoring, optimal hemodynamics, and seamless tissue integration, supporting Precision Medical Treatment with durability and reliable long-term performance.
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Solution

Product Description

The Heart Valve Frame is a precision-engineered structural scaffold, commonly made from biocompatible materials such as nitinol or titanium. It serves as the supporting framework for prosthetic heart valves, providing a stable base for the attachment of valve leaflets. Designed for both surgical and transcatheter valve replacement procedures, the frame ensures secure anchoring, optimal hemodynamic performance, and seamless integration with cardiac tissue. Its advanced design supports Precision Medical Treatment, balancing flexibility, durability, and biocompatibility to maintain reliable performance over the lifetime of the device.


Product Features

  • Medical-Grade Alloy Material: Constructed from high-quality nitinol or titanium, ensuring biocompatibility, corrosion resistance, and long-term stability in vivo.

  • Precision Machining: Manufactured using automated machining techniques to ensure high dimensional accuracy and consistent quality, critical for Precision Medical Treatment applications.

  • High Durability: Tested up to 380 million cycles, delivering stable performance, structural integrity, and safety over extended use.

  • Optimized Design: Engineered to expand precisely from a compressed state to a set shape during deployment, ensuring proper placement and function.


Product Advantages

  • Reliable Structural Support: Provides a robust base for valve leaflets, ensuring consistent valve function and hemodynamic performance.

  • Enhanced Safety: High durability and fatigue resistance minimize risks associated with long-term implantation, supporting safe Precision Medical Treatment.

  • Precision Deployment: Automated manufacturing and optimized design allow accurate expansion and secure anchoring within the natural valve site.

  • Biocompatibility: Medical-grade nitinol and titanium reduce the risk of tissue irritation, inflammation, or rejection.

  • Versatility: Compatible with both transcatheter and surgical prosthetic valve systems, broadening clinical application.


Application Scenarios

  • Transcatheter Aortic Valve Replacement (TAVR): Delivered via catheter to the native valve site, expanded, and used to anchor the prosthetic valve securely.

  • Mitral and Pulmonary Valve Replacement Procedures: Serves as a structural scaffold for specialized prosthetic valves in minimally invasive interventions.

  • Valve Repair Procedures: Supports the attachment of customized valve structures to restore proper cardiac function.

  • Precision Medical Treatment: Essential in procedures requiring exact placement and reliable performance of prosthetic valves, ensuring patient-specific outcomes.


Precautions / Notes

  • Only trained medical professionals should handle and deploy the Heart Valve Frame.

  • Inspect the frame prior to implantation for structural integrity and any manufacturing defects.

  • Avoid exposure to conditions outside the recommended storage environment (temperature, humidity, and contamination-free handling).

  • Ensure compatibility with the selected prosthetic valve and delivery system.

  • Follow hospital or clinic guidelines for sterilization, handling, and implantation.


FAQ

Q1: What materials are used in the Heart Valve Frame?
A1: The frame is typically made from biocompatible nitinol or titanium, providing flexibility, durability, and resistance to corrosion in the body.

Q2: What is the durability of the Heart Valve Frame?
A2: The frame is tested to withstand up to 380 million cycles, ensuring long-term stable performance in cardiac applications.

Q3: How is the Heart Valve Frame deployed?
A3: For transcatheter procedures, the frame is delivered in a compressed state through a catheter and then expanded at the target valve site to anchor the prosthetic valve.

Q4: Can this frame be used for both surgical and transcatheter procedures?
A4: Yes, it is designed for compatibility with both surgical prosthetic valves and transcatheter interventions.

Q5: What safety measures should be taken during implantation?
A5: Only qualified cardiac surgeons or interventional cardiologists should handle the device. Inspect the frame before use, and ensure proper sterilization and delivery technique to prevent complications.

Q6: How does the Heart Valve Frame support Precision Medical Treatment?
A6: Its precision-engineered structure and accurate deployment ensure that prosthetic valves are positioned exactly within the heart, maintaining hemodynamic performance and patient-specific outcomes.

Q7: How does the Heart Valve Frame ensure hemodynamic performance?
A7: Its structure maintains the correct positioning and tension of valve leaflets, enabling consistent blood flow and minimizing regurgitation.


Technological Process

Technological Process

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