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Straight RF Cannula 22g, 100mm, PMC22-100-4B

$444.95
For larger quantities: Request a Quote
Medex SKU:
AVA-PMC22-100-4B
Packing Info:
48/Box
Usually Ships:
7 - 10 Business Days

Description

The PMC22-100-4B is a specialized Straight Radiofrequency (RF) Cannula manufactured by Avanos Medical. It is a sterile, single-use component designed to provide a percutaneous pathway for an RF probe to reach targeted nervous tissue during conventional radiofrequency ablation procedures.

The "B" in the model name typically indicates a Blunt tip, which is used to enhance safety when navigating near sensitive vascular or neurological structures.

Key Features

  • Blunt Tip Design: Features a rounded, non-sharp distal tip to reduce the risk of accidental vessel puncture or nerve trauma during insertion and positioning.

  • Straight Shaft: Provides a direct, non-curved approach for anatomical targets where steering around bony landmarks is not required.

  • High-Quality Insulation: The stainless steel shaft is fully insulated except for the active tip, ensuring precise thermal energy delivery to the target site.

  • Color-Coded Hub: Features a color-coded hub (typically black for this series) for rapid identification of the cannula gauge.

  • Disposable: Sterile and intended for single use to prevent cross-contamination and ensure the highest procedural safety standards.

Technical Specifications

  • Gauge: 22 G

  • Length: 100 mm

  • Active Tip: 4 mm (the uninsulated portion responsible for creating the thermal lesion)

  • Tip Shape: Blunt

  • Radiopacity: Visible under fluoroscopy for accurate placement (though this "PMC" model typically does not feature the specific platinum band found on "PMF" models).

  • Sterilization: Ethylene Oxide (EO).

  • Quantity: 10 units per Case (CS).

Kit Contents

This product is typically sold as a selling package of individual cannulas. Each sterile unit contains:

  • 1 Straight RF Cannula (22 G x 100 mm)

  • 1 Matching Internal Stylet (designed to provide structural support and prevent tissue coring during insertion)