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Published on: October 20, 2017
Recognition and prevention of neurological complications in pediatric cardiac surgery
1Institute of Child Health (UCL), The Wolfson Centre, Mecklenburgh Square, London WC1N 2AP, UK.
Insights
Pediatric heart surgery survivors face neurological risks. Optimizing cardiopulmonary bypass, cerebral cooling, and monitoring can prevent neurodevelopmental deficits in high-risk children.
Area of Science:
- Pediatric Cardiac Surgery
- Neurodevelopmental Outcomes
- Cardiopulmonary Bypass
Background:
- Advances in congenital heart disease repair have increased survival rates.
- However, a significant incidence of acute neurological events and subtle long-term neurodevelopmental deficits are observed postoperatively.
- Certain patient factors (cardiac/cerebrovascular anatomy, genetic predisposition) and surgical techniques (e.g., Fontan operation, deep hypothermia) increase neurodevelopmental risk.
Purpose of the Study:
- To review current evidence and provide guidance for optimizing cerebral outcomes in pediatric patients undergoing cardiac surgery.
- To identify risk factors and strategies for preventing neurological sequelae in this population.
Main Methods:
- Review of recent studies in animal models and children.
- Analysis of data regarding cardiopulmonary bypass techniques, temperature management, flow rates, and pharmacological interventions.
- Consideration of risk factors associated with specific cardiac conditions and surgical procedures.
Main Results:
- Maintaining adequate pump flow (≥30 ml/kg/min) and blood pressure is crucial.
- Deep cerebral hypothermia is mandatory if low flow or circulatory arrest is necessary; pH-stat or alpha-stat strategies depend on hypothermia level.
- High hematocrit and oxygen tension may mitigate hypoxia; membrane oxygenators and monitoring reduce embolization risk. Methylprednisolone is recommended for spinal cord protection.
Conclusions:
- Recognizing high-risk populations is key to preventing neurological sequelae.
- Specific management strategies during cardiopulmonary bypass, including flow, temperature, and oxygenation, are vital for optimal cerebral outcomes.
- Further research is needed to refine protective measures and ensure the best neurodevelopmental results for pediatric cardiac surgery patients.
Abstract:
Because of advances in surgical and cardiopulmonary bypass techniques it is now possible to definitively repair the vast majority of congenital heart disease in infancy or childhood. Although the majority of survivors do not have obvious cerebral sequelae, there is increasing disquiet about the high incidence of acute neurological events in the immediated postoperative period as well as evidence that at long-term follow-up there are subtle cognitive and motor deficits in many. Some children are more at risk of neurodevelopmental problems, either because of their cardiac (e.g. , extensive aortopulmonary collaterals) or cerebrovascular (e.g., the propensity to large vessel dissection) anatomy or because of genetic predisposition (e.g., to prothrombotic disorders). The incidence may vary with the surgery (e.g., the Fontan operation) and the cardiopulmonary bypass technique necessary to achieve an adequate technical repair (e.g., low or no flow at deep hypothermia). Recognition of the population at risk will lead to prevention of serious sequelae. Data collected in adults may be misleading, and many pediatric units have developed their own practice, but recent studies in animal models of child surgery and in children have produced some evidence to guide management to ensure the optimal cerebral as well as cardiac outcome. Pump flow should be maintained at least 30 ml/kg/min where possible, with inotropic support to maintain blood pressure if necessary. If pump flow must be lowered or circulatory arrest is essential, thorough cerebral cooling to deep hypothermic temperatures is mandatory; a pH-stat strategy may make this easier, but an alpha-stat strategy may be better in those operations that can be performed at moderate hypothermia. There is no evidence that the available pulsatile pumps offer an advantage. Tissue oxygenation may reach critical levels and a high hematocrit and oxygen tension may reduce the risk of significant hypoxia. There is a risk of embolization in children, which can be reduced with membrane oxygenators and careful monitoring; the role of arterial filtration remains controversial. The only protective agent that can currently be recommended is methylprednisolone to protect the spinal cord (e.g., in operations on the aortic arch). Further studies are needed in this important area.
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