Cabrol-Type Aortocoronary Anastomosis Technique in Coronary Artery Bypass Surgery

Tae Sik Kim1, Chan-Young Na2, Hyonggin An3

  • 1Department of Thoracic and Cardiovascular Surgery, Korea University Medical Center, Seoul, Republic of Korea.

Insights

This study evaluated a novel Cabrol-type aortocoronary anastomosis for coronary artery bypass grafting (CABG). While not superior to conventional CABG, it offers a potential alternative for specific patient groups.

Area of Science:

  • Cardiovascular Surgery
  • Thoracic Surgery
  • Vascular Surgery

Background:

  • Conventional coronary artery bypass grafting (CABG) requires multiple aortic anastomoses for multi-vessel coronary targeting.
  • A novel single-site proximal anastomosis technique, the Cabrol-type, was developed for improved efficiency.
  • This technique involves a side-to-side anastomosis to the ascending aorta and an end-to-end anastomosis to a second graft for contralateral coronary arteries.

Purpose of the Study:

  • To evaluate the long-term clinical outcomes of the Cabrol-type aortocoronary anastomosis technique.
  • To assess the graft patency rates associated with this innovative surgical approach.
  • To determine the safety and efficacy of the Cabrol-type technique in a large patient cohort.

Main Methods:

  • A total of 483 patients underwent CABG using the Cabrol-type technique between 2002 and 2012.
  • The average number of target coronary arteries was 3.4 per patient.
  • Mean follow-up was 74.2 months, with 98.7% of survivors completing follow-up; 81.8% had postoperative coronary CT angiography.

Main Results:

  • Operative mortality was 4.6%.
  • Actuarial 1, 5, and 10-year survival rates were 97.8%, 89.3%, and 69.0%, respectively.
  • One- and 5-year graft patency rates were 81.1% and 61.3%, respectively.

Conclusions:

  • The Cabrol-type aortocoronary anastomosis technique did not demonstrate superior clinical outcomes or graft patency compared to conventional CABG.
  • This technique may serve as a viable alternative for select patients with ascending aorta atherosclerosis or challenging anatomy.
  • Further research may explore its utility in specific complex coronary revascularization scenarios.
Abstract

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