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Electroencephalographic changes after pediatric cardiac surgery with cardiopulmonary bypass: is slow wave activity
Bernard Schmitt1, Barbara Finckh, Stephan Christen
1University Children's Hospital, Zürich, Switzerland. benhard.schmitt@kispi.unizh.ch
Insights
Postoperative EEG slowing after pediatric cardiac surgery does not predict poor neurologic outcomes. This EEG change was linked to reduced oxidative stress and inflammation, suggesting a protective response.
Area of Science:
- Pediatric Neurology
- Cardiovascular Surgery
- Neurophysiology
Background:
- Pediatric cardiac surgery using cardiopulmonary bypass (CPB) often leads to neurological deficits.
- Postoperative electroencephalogram (EEG) changes are common but their clinical significance remains unclear.
Purpose of the Study:
- To describe postoperative EEG changes after pediatric cardiac surgery.
- To assess potential causes of these EEG changes.
- To evaluate the relationship between EEG findings and neurologic outcomes.
Main Methods:
- EEG recordings were performed on 36 pediatric patients (31 children, 5 neonates) undergoing congenital heart disease surgery.
- Spectral analysis quantified pre- and postoperative delta power differences (delta-deltaP).
- Delta-deltaP was correlated with clinical variables, oxidative stress markers (plasma ascorbate), and inflammation markers (IL-6, IL-8).
Main Results:
- EEG slowing (increased deltaP) was observed in most patients within 48 hours post-CPB.
- Increased delta-deltaP was more frequent in patients without neurologic deficits.
- Maximal delta-deltaP showed inverse correlations with CPB duration, ventilation time, oxidative stress, and inflammation.
Conclusions:
- Postoperative EEG slowing is a frequent finding after pediatric cardiac surgery with CPB.
- EEG slowing is not associated with adverse neurologic outcomes.
- EEG slowing may indicate reduced perioperative oxido-inflammatory stress.
Abstract:
Pediatric cardiac surgery with cardiopulmonary bypass (CPB) is frequently associated with neurologic deficits. We describe the postoperative EEG changes, assess their possible causes, and evaluate their relevance to neurologic outcome. Thirty-one children and five neonates with congenital heart disease were included. EEG recording started after intubation and continued until 22-96 h after CPB. In addition to conventional analysis, spectral analysis was performed for occipital and frontal electrodes, and differences between pre- and postoperative delta power (delta-deltaP) were calculated. Maximum values of occipital delta-deltaP that occurred within 48 h after CPB were correlated with clinical variables and with perioperative markers of oxidative stress and inflammation. Occipital delta-deltaP correlated with frontal delta-deltaP, and maximum delta-deltaP correlated with conventional rating. Distinct rise of deltaP was detected in 18 of 21 children without any acute or long-term neurologic deficits but only in five of 10 children with temporary or permanent neurologic deficits. Furthermore, maximally registered delta-deltaP was inversely associated with duration of CPB and postoperative ventilation. Maximal delta-deltaP was also inversely associated with the loss of plasma ascorbate (as an index of oxidative stress) and plasma levels of IL-6 and IL-8. Slow wave activity frequently occurs within 48 h after CPB. However, our data do not support the notion that EEG slowing is associated with adverse neurologic outcome. This is supported by the fact that EEG slowing was associated with less oxido-inflammatory stress.
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