ScienCrown Transcatheter Aortic Valve Replacement System

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ScienCrown Transcatheter Aortic Valve Replacement System

ScienCrown Transcatheter Aortic Valve Replacement System

ScienCrown Transcatheter Aortic Valve Replacement System
ScienCrown Transcatheter Aortic Valve Replacement System
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The world's only self-expanding short valve combining the advantages of both self-expanding and balloon-expandable valves

Introduction to ScienCrown TAVR System

Achieve the deployment effect of a balloon-expandable valve using the release method of a self-expanding valve

Short stent to avoid the coronary artery occlusion after release.

Advantage
  1. Short valve stent design without “corolla” No coronary ostium occlusion occurs.

  2. Self-expanding straight tube design

    The waist anchorage zone features strong radial supporting force. Full-coupling connection + locked delivery system:12 coupling head design, realizing 100% retrieval rate. Accurate positioning, allowing for both forward and backward adjustments.

  3. AI numerical system

    Anatomical analysis of lesions and optimization of implantation procedure. Comprehensive evaluation of postoperative efficacy, improving the success rate of operation. Pre-bending design for smooth passage through the aortic arch Slow release and stable uncoupling without displacement

  4. Sinus alignment without occlusion

    Available in both transfemoral and transapical delivery approaches

How it works
Indications

This product is intended for patients with symptomatic, calcified, severe degenerative aortic stenosis who have been evaluated by a heart team using an established risk assessment system, are 70 years of age or older, and are deemed unsuitable for conventional surgical aortic valve replacement.

Clinical results
Product Details
  • Structure indication and technical parameters
  • EWS Early Warning Score
  • Product features
  • Ordering Information
  • Structure indication and technical parameters

    1.Hub | 2. Hypotube | 3. Side hole | 4. Inner tube | 5. Balloon | 6. Blade | 7. Tip

    1.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    3.The effective length of the catheter:1400mm
    2.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    4.Marker location: Both ends of the balloon
  • Structure indication and technical parameters2

    1.Hub | 2. Hypotube | 3. Side hole | 4. Inner tube | 5. Balloon | 6. Blade | 7. Tip

    1.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    3.The effective length of the catheter:1400mm
    2.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    4.Marker location: Both ends of the balloon
  • Structure indication and technical parameters3

    1.Hub | 2. Hypotube | 3. Side hole | 4. Inner tube | 5. Balloon | 6. Blade | 7. Tip

    1.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    3.The effective length of the catheter:1400mm
    2.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    4.Marker location: Both ends of the balloon
  • Structure indication and technical parameters4

    1.Hub | 2. Hypotube | 3. Side hole | 4. Inner tube | 5. Balloon | 6. Blade | 7. Tip

    1.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    3.The effective length of the catheter:1400mm
    2.Adapted guiding catheter: Minimum guiding catheter 1.8mm/6
    4.Marker location: Both ends of the balloon
Product features
Self-expanding Short Valve Stent Design
  • Beneficial to full life cycle management
  • Blades Working height is only 0.13mm, which could avoid blood vessel perforation
100% Full Connection Patented Design (Patent No.: CN111821068B, CN118490419B)
  • 1. Enhanced coaxiality and stability for precise implantation.
  • 2. Pre-curved capsule design for smooth arch passage, minimizing vascular injury.
Transfemoral and Transapical Dual Access Design
  • Transfemoral and transapical dual access provide more route solutions.
Pre-curved Patented Design (Patent No.: CN116236322B)
  • 1. Enhanced coaxiality and stability for precise implantation.
  • 2. Pre-curved capsule design for smooth arch passage, minimizing vascular injury.
Segmented Microsurgical blades Design
  • Sharp and anti-friction blades, balance cuttingforce and flexibility
  • Blades Working height is only 0.13mm, which could avoid blood vessel perforation
  • Pre-made longitudinal neat blades, which could reduce the risk of intimal disordered tearing
Segmented Microsurgical blades Design
  • Sharp and anti-friction blades, balance cuttingforce and flexibility
Semi-compliant balloon
  • lmprove crossability
  • Optimize retraction
Semi-compliant balloon
  • lmprove crossability
  • Optimize retraction
Product features
Segmented Microsurgical blades Design
  • Sharp and anti-friction blades, balance cuttingforce and flexibility
  • Blades Working height is only 0.13mm, which could avoid blood vessel perforation
  • Pre-made longitudinal neat blades, which could reduce the risk of intimal disordered tearing
Segmented Microsurgical blades Design
  • Sharp and anti-friction blades, balance cuttingforce and flexibility
Semi-compliant balloon
  • lmprove crossability
  • Optimize retraction
Semi-compliant balloon
  • lmprove crossability
  • Optimize retraction
Indications

The Cutting Balloon Dilatation Catheter is indicated to be applled for patients with atherosclerotic plaques in the coronary arteries that need to be cut.

  • General View
  • Big Numerical View
  • Mini Trend View
  • ECG Ha

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