ASAHI RG3®
0.010 in retrograde externalization guidewire · Coronary Guidewires

ASAHI RG3®Product Code (REF): AHW10S302S

RG3 exists for the final act of retrograde CTO PCI: externalization. Once a retrograde wire and microcatheter have crossed the occlusion, RG3 travels the full retrograde route — donor guide, collateral channel, occlusion, antegrade guide — to create a continuous guide-to-guide rail. Its 330 cm usable length is what makes that journey possible while leaving workable wire outside both guides. The wire is deliberately gentle on the anatomy it transits. The 0.26 mm (0.010 in) shaft — thinner than a standard 0.014 in wire — flexes with the collateral course to help prevent vessel damage, and 170 cm of hydrophilic coating keeps movement inside the retrograde microcatheter smooth over the long overlap. A 3 gf tip with 3 cm radiopaque segment provides the control needed to complete the route under fluoroscopy. Once externalized, RG3 serves as the delivery rail over which antegrade balloons and stents track with exceptional back-up — the reason the retrograde approach, when it succeeds, converts difficult CTOs into deliverable ones.

This page documents catalog code (REF) AHW10S302S of the ASAHI RG3®.

Available under product code AHW10S302S.

Sizes & Specifications

Diameter
0.010 in (0.26 mm)
Usable length
330 cm
Tip load
≈ 3 gf
Coating
Hydrophilic (170 cm)

Manufacturer: Asahi Intecc Co., Ltd. · Reference source: medical.asahi-intecc.com

Design & Technology

Technical characteristics and diagrams as published by Asahi Intecc.

Structure

Full-length structure diagram of ASAHI RG3 (official manufacturer illustration)

Product Features

Design characteristics as published by Asahi Intecc.

0.26mm(0.010inch) shaft design

Prevent the vessel damage by its flexible shaft design.

Hydrophilic Coating

170cm hydrophilic coating provides inside-catheter smooth tracking.

Product Identification & Specifications

Reference identifiers for procurement, registration and tender documentation.

Product CodeAHW10S302S
REF NumberAHW10S302S
ManufacturerAsahi Intecc Co., Ltd.
BrandAsahi Intecc
Product FamilyCoronary Guidewires
Country AvailabilityTajikistan, Afghanistan

Clinical Applications

The ASAHI RG3® is a 0.010 in retrograde externalization guidewire in the Coronary Guidewires family from Asahi Intecc Co., Ltd., used by interventional specialists in procedures where a 0.010 in retrograde externalization guidewire of this class is indicated. It is supplied under catalog code AHW10S302S.

For the complete indications for use, contraindications and instructions for use (IFU), request the official Asahi Intecc documentation through our clinical team. Modern Medical Solutions supplies the ASAHI RG3® to hospitals and cath labs across Tajikistan and Afghanistan.

Ordering Information

Catalog reference codes as published by Asahi Intecc. Contact us to confirm current availability.

Product NameASAHI RG3
Catalog No.AHW10S302S
Tip ShapeStraight
Usable Length330cm
Outer Diameter0.26mm (0.010")
Coil Length8cm
Radiopaque Length3cm
CoatingHydrophilic
Coating Length170cm

Downloads & Documentation

Instructions for use (IFU), technical datasheets and clinical literature for the ASAHI RG3® are available on request from our clinical team.

Request Documentation

Frequently Asked Questions

What is the ASAHI RG3® used for?
The ASAHI RG3® is a 0.010 in retrograde externalization guidewire manufactured by Asahi Intecc, used by interventional physicians for precision vascular access procedures. Contact our clinical team for the full indications for use and instructions for use (IFU).
What sizes does the ASAHI RG3® come in?
The ASAHI RG3® is available in the following configurations: Diameter 0.010 in (0.26 mm), Usable length 330 cm, Tip load ≈ 3 gf, Coating Hydrophilic (170 cm).
How can I order the ASAHI RG3®?
Modern Medical Solutions is the authorized Asahi Intecc distributor for Tajikistan and Afghanistan. Submit a documentation or ordering request through our contact form and our clinical team will confirm availability and lead time.

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