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Published on: April 29, 2013
Perioperative Neuromonitoring in Children with Congenital Heart Disease
Shavonne L Massey1, Bennett Weinerman2, Maryam Y Naim3
1Division of Neurology, Department of Neurology and Pediatrics, Children's Hospital of Philadelphia, University of Pennsylvania School of Medicine, Philadelphia, PA, USA. masseysl@chop.edu.
Insights
Children with congenital heart disease face higher risks of neurologic injury and seizures. Neuromonitoring techniques like electroencephalography, neuroimaging, and near-infrared spectroscopy are crucial for early detection and improved outcomes.
Area of Science:
- Pediatric Cardiology
- Pediatric Neurology
- Neurocritical Care
Background:
- Neonates and children with congenital heart disease (CHD) have increased risks of neurologic injury.
- These risks stem from inherent nervous system differences and acquired injuries related to cardiopulmonary issues and interventions.
- Improved survival rates in CHD necessitate a focus on maximizing neurodevelopmental outcomes.
Purpose of the Study:
- To review neuromonitoring techniques for pediatric patients with CHD.
- To aid clinicians in identifying high-risk patients for neurologic injury.
- To assist in neuroprognostication following brain injury.
Main Methods:
- Electroencephalographic (EEG) monitoring to assess brain activity and detect seizures.
- Neuroimaging (e.g., MRI, CT) to identify structural brain changes and injuries.
- Near-infrared spectroscopy (NIRS) to evaluate brain tissue oxygenation and perfusion.
Main Results:
- Neuromonitoring is essential for managing neurologic risks in pediatric CHD.
- EEG, neuroimaging, and NIRS are key tools for assessing brain health.
- These methods help in early detection and management of potential neurologic complications.
Conclusions:
- Neuromonitoring strategies are vital for improving neurodevelopmental outcomes in children with CHD.
- Early identification and intervention for neurologic injury can mitigate long-term deficits.
- A multidisciplinary approach utilizing these monitoring techniques is recommended.
Abstract:
Although neonates and children with congenital heart disease are primarily hospitalized for cardiac and pulmonary diseases, they are also at an increased risk for neurologic injury due to both empiric differences that can exist in their nervous systems and acquired injury from cardiopulmonary pathology and interventions. Although early efforts in care focused on survival after reparative cardiac surgery, as surgical and anesthetic techniques have evolved and survival rates accordingly improved, the focus has now shifted to maximizing outcomes among survivors. Children and neonates with congenital heart disease experience seizures and poor neurodevelopmental outcomes at a higher rate than age-matched counterparts. The aim of neuromonitoring is to help clinicians identify patients at highest risk for these outcomes to implement strategies to mitigate these risks and to also help with neuroprognostication after an injury has occurred. The mainstays of neuromonitoring are (1) electroencephalographic monitoring to evaluate brain activity for abnormal patterns or changes and to identify seizures, (2) neuroimaging to reveal structural changes and evidence of physical injury in and around the brain, and (3) near-infrared spectroscopy to monitor brain tissue oxygenation and detect changes in perfusion. This review will detail the aforementioned techniques and their use in the care of pediatric patients with congenital heart disease.
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