Literature DB >> 34362272

Parallel Wiring Using a Single Intravascular Ultrasound Catheter with Double Rapid Exchange Lumens Technique for Chronic Total Occlusions in Peripheral Artery Disease.

Michinao Tan1, Kazushi Urasawa1, Yusuke Sato1, Takashi Miwa1, Taichi Hayashi1.   

Abstract

PURPOSE: To describe a parallel wiring using a single intravascular ultrasound catheter with double rapid exchange lumens (PASSABLE) technique for peripheral CTOs. TECHNIQUE: The technique is demonstrated in a 73-year-old patient with CTOs of the superficial femoral and popliteal artery. Intravascular ultrasound (IVUS) examination revealed the first guidewire was advanced to the intramedial space of the popliteal artery. Following insertion of the first guidewire into only the distal rapid exchange lumen of the IVUS catheter and a second guidewire into the proximal rapid exchange lumen, a guidewire torquer was passed over it and tightened close to an exit port of the proximal rapid exchange lumen to prevent it from exiting an entry port while advancing the IVUS catheter. The IVUS catheter was advanced to the intraplaque region using only the distal rapid exchange lumen and the second guidewire was then advanced to the intraplaque region under IVUS guidance. The IVUS-guided wiring using the second guidewire on both the distal and proximal rapid exchange lumen was continued and resulted in a successful guidewire crossing into the distal true lumen.
CONCLUSION: This novel technique may prove beneficial in enabling operators to perform IVUS-guided parallel wiring more easily and efficiently.

Entities:  

Keywords:  chronic total occlusion; endovascular treatment/therapy; femoropopliteal segment; imaging; peripheral vascular disease

Mesh:

Year:  2021        PMID: 34362272     DOI: 10.1177/15266028211036483

Source DB:  PubMed          Journal:  J Endovasc Ther        ISSN: 1526-6028            Impact factor:   3.487


  1 in total

1.  A novel initial wiring technique for chronic total occlusion of the superficial femoral artery using the structural features of a polymer jacket guidewire.

Authors:  Eiji Karashima; Yoshimitsu Soga; Takeshi Arima; Hirotaka Noda; Shioto Yasuda; Takeo Kaneko
Journal:  CVIR Endovasc       Date:  2022-07-21
  1 in total

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