Abnormalities in cardiac and respiratory function observed during seizures in childhood

Mary E O'Regan1, J Keith Brown

  • 1Fraser of Allander Neurosciences Unit, Royal Hospital for Sick Children, Yorkhill, Glasgow G3 8SJ, UK. mary.o'regan@yorkhill.scot.nhs.uk

Insights

Seizures significantly disrupt breathing in children, causing tachypnoea, apnoea, and hypoxemia, particularly during focal seizures. Cardiac changes were less frequent, indicating breathing control is more vulnerable during seizure activity.

Area of Science:

  • Pediatric Neurology
  • Clinical Neurophysiology
  • Cardiorespiratory Physiology

Background:

  • Seizures can impact autonomic nervous system function.
  • Understanding cardiorespiratory changes during seizures is crucial for patient management.

Purpose of the Study:

  • To investigate changes in cardiac and respiratory function during seizures in children.
  • To correlate specific seizure types with cardiorespiratory abnormalities.

Main Methods:

  • Electroencephalograms (EEGs), respiratory rate, heart rate, electrocardiograms (ECGs), blood pressure, and oxygen saturation were monitored in 37 children.
  • Data from 101 seizures (focal, generalized, absences) were analyzed.
  • Definitions for respiratory pauses, apnoea, tachypnoea, bradypnoea, hypoxia, and significant heart rate changes were established.

Main Results:

  • Focal seizures were strongly linked to respiratory abnormalities: 56% showed tachypnoea, 30% apnoea, 70% respiratory pauses, and 40% hypoxemia.
  • Statistically significant changes in respiratory rate were observed.
  • Cardiac parameter changes (heart rate fluctuations) occurred in 26% of focal seizures and 48% of generalized seizures.

Conclusions:

  • Seizure activity significantly disrupts cardiorespiratory regulation in children.
  • Respiratory function is particularly vulnerable to disruption during focal seizures.
  • These findings highlight the need for monitoring cardiorespiratory status during pediatric seizures.

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