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Published on: June 26, 2020
Central nervous system complications of cardiac surgery
J E Arrowsmith1, H P Grocott, J G Reves
1Department of Anaesthesia, Papworth Hospital, Papworth Everard, Cambridge, UK.
Insights
Neurological complications after cardiac surgery, including stroke and cognitive decline, are significant risks. Research focuses on neuroprotective interventions to mitigate these adverse events in an aging patient population.
Area of Science:
- Neurology
- Cardiology
- Neurosurgery
Background:
- Neurological complications increase mortality and morbidity in cardiac surgery patients.
- An aging population and complex procedures elevate the risk of neurological issues.
- Cognitive deterioration affects a substantial number of patients post-cardiac surgery.
Purpose of the Study:
- To review the incidence and risk factors of neurological complications after cardiac surgery.
- To discuss the current understanding and trends in cognitive dysfunction post-cardiac surgery.
- To explore neuroprotective strategies and their effectiveness.
Main Methods:
- Literature review of studies on neurological complications in cardiac surgery.
- Analysis of risk factors including patient age, comorbidities, and surgical techniques.
- Evaluation of neuroprotective interventions and their impact on outcomes.
Main Results:
- Perioperative stroke occurs in 1-5% of patients, influenced by age, aortic atheroma, and diabetes.
- Cognitive deterioration is common, affecting up to 80% acutely, with one-third persistent.
- Some neuroprotective measures like arterial line filtration show improved outcomes.
Conclusions:
- Despite advances, cerebral injury remains a risk in cardiac surgery.
- The incidence of cognitive dysfunction may be decreasing, but definitions and testing methods need clarification.
- Pharmacological neuroprotection holds future promise, but comprehensive strategies are needed.
Abstract:
The neurological complications of cardiac surgery are associated with significantly increased mortality, morbidity and resource utilization. The use of new surgical techniques, introduction of wider indications for surgery and increased public expectation has led to an increase in the average age of cardiac surgical patients and an increased incidence of repeat procedures. With these changes has come an increased risk of neurological complications. The likelihood of perioperative stroke varies between 1% and 5% in most published series and is dependent on a multitude of risk factors. Of these, patient age, aortic atheroma, symptomatic cerebrovascular disease, diabetes mellitus and the type of surgery appear to be most important. Cognitive deterioration after cardiac surgery is far more common, affecting as many as 80% of patients a few days after surgery and persisting in one-third. Despite an increase in the age of the cardiac surgical population, the reported incidence of cognitive dysfunction after cardiac surgery seems to have fallen in recent years. Whether this is a real phenomenon or the result of changes in the use of psychometric testing and the definition of cognitive decline remains unclear. Recognition that certain equipment, surgical practices and patient factors contribute to neurological morbidity has prompted 'neuroprotective' interventions. Some of these (e.g. arterial line filtration and alpha-stat management) have been shown to improve outcome. Despite these measures, a small number of patients will inevitably sustain cerebral injury during otherwise successful cardiac surgery. Although pharmacological neuroprotection may, in the future, offer some of these patients an improved outcome, it is unlikely that any single agent will prevent neurological injury. In the meantime, the CNS complications of cardiac surgery remain a fertile area of research.
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