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Changes in electroencephalogram and autonomic cardiovascular activity during induction of anesthesia with sevoflurane
I Constant1, M C Dubois, V Piat
1Service d'Anesthésie-Réanimation, Hopital d'Enfants Armand Trousseau, Paris, France.
Insights
Sevoflurane anesthesia induction in children showed agitation but no seizures. Sevoflurane significantly reduced parasympathetic heart rate control compared to halothane.
Area of Science:
- Anesthesiology
- Pediatric Anesthesia
- Neurophysiology
Background:
- Assessing clinical agitation, electroencephalogram (EEG), and autonomic cardiovascular activity during anesthesia induction in children.
- Comparing sevoflurane with halothane for anesthetic induction in pediatric patients.
Purpose of the Study:
- To evaluate clinical agitation, EEG changes, and cardiovascular autonomic activity during sevoflurane versus halothane anesthesia induction in children.
- To compare the effects of sevoflurane and halothane on the autonomic nervous system and brain activity during anesthetic induction.
Main Methods:
- Children aged 2-12 years were randomly assigned to sevoflurane or halothane induction groups.
- Noninvasive recordings of EEG, heart rate, and finger blood pressure were analyzed using spectral analysis.
- Induction was videotaped to assess clinical agitation.
Main Results:
- Agitation was more frequent with sevoflurane in 100% O2 compared to oxygen-nitrous oxide mixtures.
- Sevoflurane induced greater parasympathetic withdrawal and transient sympathetic vascular tone increase than halothane.
- EEG showed increased total spectral power and a shift to low frequencies, with distinct patterns for sevoflurane and halothane.
Conclusions:
- Sevoflurane induction in children is not associated with seizures, despite observed agitation.
- Sevoflurane significantly inhibits parasympathetic control of heart rate during induction.
- Findings highlight differences in autonomic and central nervous system effects between sevoflurane and halothane.
Background:
This study was design to assess clinical agitation, electroencephalogram (EEG) and autonomic cardiovascular activity changes in children during induction of anesthesia with sevoflurane compared with halothane using noninvasive recording of EEG, heart rate, and finger blood pressure.
Methods:
Children aged 2-12 yr premedicated with midazolam were randomly assigned to one of three induction techniques: 7% sevoflurane in 100% O2 (group SevoRAPID); 2%, 4%, 6%, and 7% sevoflurane in 100% O2 (group SevoINCR); or 1%, 2%, 3%, and 3.5% halothane in 50% N2O-50% O2 (group HaloN2O). An additional group of children who received 7% sevoflurane in 50% N2O-50% O2 (group SevoN2O) was enrolled after completion of the study. Induction was videotaped. EEG, heart rate, and finger blood pressure were continuously recorded during induction until 5 min after tracheal intubation and analyzed in frequency domain using spectral analysis.
Results:
Agitation was more frequent when anesthesia was induced with 100% O2 compared to the mixture of oxygen and nitrous oxide. No seizures were recorded in any group. In the four groups, induction of anesthesia was associated with an increase in EEG total spectral power and a shift toward the low-frequency bands. Sharp slow waves were present on EEG tracings of the three sevoflurane groups, whereas slow waves and fast rhythms (spindles) were observed in the halothane group. Sevoflurane induced a greater withdrawal of parasympathetic activity than halothane and a transient relative increase in sympathetic vascular tone at loss of eyelash reflex.
Conclusions:
Agitation observed during sevoflurane induction was not associated with seizures. Sevoflurane induction induced a marked inhibition of parasympathetic control of heart rate.
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