Valve Stent Microstructure Ni-Ti 7mm WT0.4mm – manufacturing for advanced medical use
Valve Stent Microstructure Ni-Ti 7mm WT0.4mm
 

Valve Stent Microstructure Ni-Ti 7mm WT0.4mm – advanced self-expanding valvular support

The Valve Stent Microstructure Ni-Ti 7mm WT0.4mm represents a state-of-the-art solution for interventional valve repair and replacement. Engineered with a precision Nitinol (Ni-Ti) microstructure, this self-expanding stent provides robust and adaptable support within the cardiovascular system. Its thin-walled design (WT0.4mm) and superior radial force minimize obstruction while ensuring optimal apposition, making it an innovative choice for complex anatomical challenges where sustained valvular integrity is paramount.

Key Features:

  • Self-Expanding Nitinol: Offers excellent shape memory and superelasticity for precise deployment and sustained radial force.
  • Thin-Walled Design (WT0.4mm): Minimizes profile for easier delivery and reduces potential for flow obstruction.
  • Optimized Microstructure: Ensures high fatigue resistance and long-term durability in dynamic physiological environments.
  • Radiopaque Markers: Facilitate accurate visualization and precise placement during fluoroscopy.
  • Biocompatible Surface: Promotes endothelialization and reduces thrombogenicity.

Certification and Standards:

Our Valve Stent Microstructure Ni-Ti 7mm WT0.4mm is manufactured under stringent quality control protocols, adhering to the highest international medical device standards, including ISO 13485:2016 and CE marking requirements. Each device undergoes comprehensive testing to guarantee its safety, performance, and efficacy in clinical applications.

Materials

Nitinol (NiTi), a nickel-titanium alloy, is renowned for its superelasticity and shape memory, making it a game-changer in medical applications. With a tensile strength of up to 1200 MPa and elastic modulus of 40–75 GPa, nitinol excels in demanding environments.

Application

The Valve Stent Microstructure Ni-Ti 7mm WT0.4mm is primarily indicated for use in interventional cardiology and vascular surgery for the treatment of valvular diseases. Its self-expanding design and precise microstructure make it suitable for a range of procedures where stable and long-term valvular support is required. Potential applications include, but are not limited to:

  • Transcatheter heart valve repair or replacement procedures.
  • Support for native or prosthetic valves in complex anatomical situations.
  • Management of valvular stenosis or regurgitation.
  • Procedures requiring precise and gentle deployment through minimally invasive approaches.
Specifications
  • Stent Diameter: 7.0 mm (Self-expanding to nominal diameter)
  • Wall Thickness (WT): 0.4 mm
  • Material: Medical Grade Nitinol (Ni-Ti)
  • Working Lengths: Available in various standard lengths to accommodate diverse anatomical needs.
  • Radial Force: Optimized for sustained apposition without compromising flow.
  • Fatigue Resistance: Engineered for long-term durability in dynamic cardiovascular environments.
  • Sterilization: EO (Ethylene Oxide) Sterilized.
  • Packaging: Individually sterile-packed for single-use application.
  • Compatibility: Compatible with standard delivery systems and endoscopic channels for precise deployment.
  • Radiopacity: Enhanced for clear visualization during fluoroscopic guidance.
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    • Precision laser machines for medical stents.
    • High-quality materials for medical equipment.
    • Laser cutting solutions for hypotubes.
    • Specialized machines for surgical components.
    • Nitinol tube cutting with precision.
    • Cobalt-chrome cutting for medical implants.
    • Platinum-iridium materials for fine applications.
    • Reliable machines for ultra-thin metals.
    • Supplying nitinol and cobalt-chrome alloys.
    • Precision laser machines for medical stents.
    • High-quality materials for medical equipment.
    • Laser cutting solutions for hypotubes.
    • Specialized machines for surgical components.
    • Nitinol tube cutting with precision.
    • Cobalt-chrome cutting for medical implants.
    • Platinum-iridium materials for fine applications.
    • Reliable machines for ultra-thin metals.
    • Supplying nitinol and cobalt-chrome alloys.
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