Identification of a Dissection Site in the Internal Thoracic Artery Using Fluorescence Imaging: A Case Report
Tomohiro Nakajima1, Yutaka Iba1, Tsuyoshi Shibata1
1Cardiovascular Surgery, Sapporo Medical University, Sapporo, JPN.
Insights
Coronary artery bypass grafting (CABG) in a diabetic patient with complex coronary artery disease was complicated by left internal thoracic artery dissection. Prompt surgical reintervention using fluorescence imaging successfully restored graft patency and ensured a favorable outcome.
Area of Science:
- Cardiovascular Surgery
- Vascular Surgery
- Medical Imaging
Background:
- A 66-year-old male with type 2 diabetes mellitus and end-stage renal disease requiring hemodialysis presented with angina.
- Coronary angiography confirmed triple-vessel coronary artery disease, necessitating coronary artery bypass grafting (CABG).
- Previous percutaneous coronary interventions had failed due to recurrent restenosis.
Abstract:
A 66-year-old man with a history of type 2 diabetes mellitus who was undergoing hemodialysis presented with angina. Coronary angiography revealed triple-vessel coronary artery disease. He underwent multiple percutaneous coronary interventions due to recurrent restenosis and was referred for coronary artery bypass grafting (CABG). The left internal thoracic artery and bilateral saphenous veins were harvested under general anesthesia. Four CABGs were performed: left internal thoracic artery to the left anterior descending artery; saphenous vein graft to the obtuse marginal branch of the circumflex artery; and saphenous vein graft to two sites in the right coronary artery. Intraoperative assessment with transit-time flow measurements showed no abnormalities, and the surgery was completed. On postoperative day seven, coronary and graft angiography revealed dissection of the left internal thoracic artery at its midportion with restricted flow. On postoperative day eight, a surgical intervention was performed to excise the dissected segment of the left internal thoracic artery. The dissection site was identified by fluorescence imaging. The dissected segment was excised, and the artery was re-anastomosed. The postoperative course was uneventful, and graft angiography performed on postoperative day 22 confirmed good blood flow. Fluorescence imaging was valuable in identifying the dissection site in the left internal thoracic artery.
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