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Updated: Jul 11, 2026

Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique
Published on: April 1, 2022
"Wire kissing technique" and "externalization and pull-through technique" for treating chronic total occlusion in
Masatoshi Inoue1,2, Kazuhiro Matsuo3, Takahiro Tamaki4
1Department of Nephrology, Tokai Central Hospital, Kakamigahara City, Gifu Prefecture, Japan.
Insights
Novel techniques successfully treated chronic total occlusion (CTO) in hemodialysis vascular access when standard methods failed. These approaches improved blood flow, offering a new solution for patients facing access complications.
Area of Science:
- Nephrology
- Interventional Radiology
- Vascular Surgery
Background:
- Dependable vascular access is critical for hemodialysis, yet complications like chronic total occlusion (CTO) significantly increase patient morbidity and mortality.
- Conventional methods often fail to address complex CTO lesions in dialysis vascular access, necessitating innovative treatment strategies.
Abstract:
The construction and utilization of dependable vascular access are essential for hemodialysis. Despite its importance, complications with vascular access are common, significantly impacting patient morbidity and mortality. This report presents a novel approach to treating chronic total occlusion (CTO) in hemodialysis vascular access using the "wire kissing technique" an "externalization and pull-through technique." An 82-year-old woman on hemodialysis had a thrombotic obstruction in her cephalic vein, which conventional methods failed to address. The wire kissing technique allowed the meeting of antegrade and retrograde wires within the CTO lesion, stabilizing the wire and facilitating balloon passage. The externalization and pull-through technique further enabled the balloon to cross the rigid CTO lesion, successfully completing percutaneous transluminal angioplasty (PTA). Post-procedure ultrasonography showed significant improvements in flow volume and resistance index. These techniques, commonly used in coronary and femoral arteries, have not been previously reported for dialysis vascular access. This case highlights a novel and effective solution for overcoming technical difficulties in crossing CTO lesions, potentially improving outcomes in vascular access for hemodialysis patients.
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