Hainwise Medical Technology Co., Ltd.

Products
Home > Products>N+ Smart™ Neuro Micro-Guidewire

N+ Smart™ Neuro Micro-Guidewire


N+ Cyclone™ Neuro Micro-Guidewire: Precision Engineering for Complex Navigation



The N+ Cyclone™ Neuro Micro-Guidewire features an integrated multi-component architecture engineered for precise and safe neurovascular navigation. Its distal end consists of a flexible, high-visibility platinum coil tip, which transitions smoothly via a multi-tapered stainless steel core to a robust proximal hypotube. This design ensures an optimal balance between atraumatic distal flexibility for delicate vessels and the strong, 1:1 torque-responsive support needed for controlled advancement. The distal segment is further enhanced with a hydrophilic coating, significantly reducing friction to facilitate smooth trackability through complex tortuous anatomy, while color-coded proximal handles ensure intuitive clinical operation.

N+ Cyclone™ Neuro Micro-Guidewire Structural Design

Structural Configuration Overview

1. Distal End Architecture

  • Platinum Coil Construction: High-density platinum windings provide exceptional fluoroscopic visibility while maintaining atraumatic flexibility for delicate neurovascular navigation.

  • Custom-Shapeable Tip: Platinum coil tip can be manually shaped to match specific vessel anatomy, enabling precise directional control and selective catheterization.

2. Transition Zone Engineering

  • Multi-Tapered Core Design: Gradually tapered stainless steel core creates a seamless transition from proximal stiffness to distal flexibility, optimizing pushability without compromising trackability.

  • Hydrophilic Coating Segment: Distal 25 cm features uniform hydrophilic polymer coating (activated upon saline contact) that reduces surface friction by ≥70%, facilitating smooth passage through tortuous vasculature.

3. Proximal End System

  • Hypotube Reinforcement: High-strength stainless steel hypotube provides exceptional column strength and torque response, ensuring 1:1 rotational control during complex navigation.

  • Proximal Handle Design: Color-coded ergonomic handle with torque device compatibility allows for precise single-handed operation and immediate procedural recognition.

Technical Integration

Core-to-Coil Transition

  • Laser-Welded Junction: Precision laser welding between tapered core and platinum coil creates a smooth, fracture-resistant transition zone

  • Variable Pitch Coiling: Progressive coil winding density adjusts from proximal support to distal flexibility

  • Tip Load Options: Available in 2g (soft) and 4g (medium) configurations for different clinical requirements

Coating Technology

  • Dual-Layer Hydrophilic System:

    • Base layer: Polyurethane bonding substrate

    • Surface layer: Cross-linked hydrogel polymer

  • Lubricity Performance: Coefficient of friction <0.05 when hydrated

  • Durability: Maintains lubricity through >10 passes in simulated tortuous anatomy

Radiopaque Markers

  • Primary Marker: Platinum coil tip (3mm length)

  • Secondary Marker: Tantalum band at 3cm from tip

  • Tertiary Marker: Additional band at 10cm for positioning reference


Performance Characteristics

Mechanical Properties

  • Torque Transmission: 1:1 response within 180° rotation

  • Tip Deflection Force: 0.5-2.0 mN depending on configuration

  • Column Strength: 150 gf buckling resistance

  • Fatigue Resistance: >100,000 cycles at 90° bend

Clinical Performance Metrics

  • Trackability: Successfully navigates 180° turns with 2mm radius

  • Crossing Profile: 0.014" (0.36mm) distal diameter

  • Visualization: 3-point radiopaque system for precise localization

  • Recoil Time: Returns to straight configuration within 0.5 seconds


ModelOuter Diameter (inch)Effective Length (cm)Tip Flexibility
NGS-14200SF0.014200soft
NGS-14300SF
0.014
300soft
NGS-14200SD0.014
200standard
NGS-14300SD
0.014
300standard


image.png

Related Products

Leave Your Message

Please leave your contact information to download our materials and allow us to get in touch with you.