Complex Coronary Artery Bypass Grafting: Intraoperative Challenges and Surgical Strategies in Contemporary Practice

Ahmed Osman1, Karim Elrakhawy1, Dominique Shum-Tim2

  • 1Faculty of Medicine, University of Montreal, 850 Boul. de Maisonneuve E, Montreal, QC H2L 4L8, Canada.

Insights

Complex coronary artery bypass grafting (CABG) requires structured strategies for challenging scenarios like embedded coronaries and calcified disease. Optimal outcomes depend on precise target localization, graft bed preparation, and bailout techniques.

Area of Science:

  • Cardiovascular Surgery
  • Interventional Cardiology
  • Vascular Biology

Background:

  • Contemporary coronary artery bypass grafting (CABG) faces challenges in patients with diffuse atherosclerosis, severe calcification, prior percutaneous coronary intervention (PCI), and fragile myocardium.
  • These conditions complicate target selection, anastomotic quality, and completeness of revascularization during surgery.

Purpose of the Study:

  • To synthesize operative strategies and outcomes across five predefined complex CABG scenarios.
  • To identify key technical considerations and solutions for intraoperative challenges in CABG.

Main Methods:

  • A focused literature review was performed on intraoperative CABG challenges in adult patients.
  • Two reviewers screened and selected studies detailing operative techniques or outcomes for specific complex scenarios.
  • Data were synthesized across five scenarios: intramyocardial/embedded coronaries, calcified/diffuse disease, small-caliber targets, iatrogenic right ventricular (RV) injury, and failed PCI/stent-related management.

Main Results:

  • Intramural/embedded coronaries require structured localization strategies with a risk of ventricular injury.
  • Reconstructive approaches for calcified/diffuse disease create graftable beds, showing acceptable early mortality and good patency with antithrombotic therapy.
  • Small-caliber targets can be grafted successfully with optimized flow using sequential grafting and intraoperative verification.
  • Iatrogenic RV injury management prioritizes hemostasis and graft patency using buttressed closure.
  • Failed PCI/stent management involves target reconstruction, with variable patency observed.

Conclusions:

  • Complex CABG necessitates structured, anatomy-driven problem-solving, including target localization, graft bed creation, flow-augmenting designs, and bailout options.
  • Standardized comparative studies are needed to define optimal strategies for these common, clinically significant CABG scenarios.

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