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Published on: March 28, 2025
Aortic arch atheroma: stroke reduction in cardiac surgical patients
1Department of Anesthesia and Pain Management, Toronto General Hospital, University Health Network, University of Toronto, Toronto, Ontario, Canada. george.djaiani@uhn.on.ca
Insights
Elderly patients undergoing cardiac surgery face risks of neurologic complications. Identifying aortic disease guides treatment to reduce stroke and improve outcomes.
Area of Science:
- Cardiology
- Neurology
- Vascular Surgery
Background:
- Elderly patients undergoing cardiac surgery often have complex coronary artery disease and comorbidities.
- These patients are at high risk for perioperative neurologic complications, including cognitive dysfunction, delirium, and stroke.
- New ischemic brain infarcts are frequently observed post-cardiac surgery, especially after conventional coronary artery bypass graft surgery.
Purpose of the Study:
- To discuss mechanisms of cerebral injury during and after cardiac surgery.
- To highlight methods for identifying patients at high risk for neurologic injury.
- To emphasize strategies for minimizing perioperative neurologic complications.
Main Methods:
- Intraoperative transesophageal echocardiography and epiaortic scanning to detect atheromatous disease of the proximal thoracic aorta.
- Preoperative magnetic resonance angiography for screening patients with significant proximal thoracic aorta atheroma.
- Management strategies including temperature and glycemia control, and pharmacologic neuroprotection.
Main Results:
- Atheromatous disease of the aorta is a key risk factor for neurologic injury during cardiac surgery.
- Conventional coronary artery bypass graft surgery may increase the risk of new ischemic brain infarcts.
- Tailored treatment strategies based on aortic atheroma burden can potentially improve outcomes.
Conclusions:
- Identifying patients with significant aortic atheroma is crucial for risk stratification.
- Patients with significant atheromatous disease may benefit from beating heart surgery, hybrid techniques, or medical therapy.
- Comprehensive management, including intraoperative and postoperative neuroprotection, is essential to reduce neurologic injury and improve long-term outcomes in cardiac surgery patients.
Abstract:
Cardiac surgery is increasingly performed on elderly patients with extensive coronary artery abnormalities who have impaired left ventricular function, decreased physiologic reserve, and multiple comorbid conditions. Considerable numbers of these patients develop perioperative neurologic complications ranging from subtle cognitive dysfunction to more evident postoperative confusion, delirium, and, less commonly, clinically apparent stroke. Magnetic resonance imaging studies have elucidated that a considerable number of patients have new ischemic brain infarcts, particularly after conventional coronary artery bypass graft surgery. Mechanisms of cerebral injury during and after cardiac surgery are discussed. Intraoperative transesophageal echocardiography and epiaortic scanning for detection of atheromatous disease of the proximal thoracic aorta is paramount in identifying patients at high risk from neurologic injury. It is important to recognize that our efforts to minimize neurologic injury should not be limited to the intraoperative period. Particular efforts should be directed to temperature management, glycemia control, and pharmacologic neuroprotection extending into the postoperative period. Preoperative magnetic resonance angiography may be of value for screening patients with significant atheroma of the proximal thoracic aorta. It is likely that for patients with no significant atheromatous disease, conventional coronary artery revascularization is the most effective long-term strategy, whereas patients with atheromatous thoracic aorta may be better managed with beating heart surgery, hybrid techniques, or medical therapy alone. Patient stratification based on the aortic atheromatic burden should be addressed in future trials designed to tailor treatment strategies to improve long-term outcomes of coronary heart disease and reduce the risks of perioperative neurologic injury.
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Encircling the heart, the coronary arteries form a ring-like structure before...