The effect of sevoflurane on electrocorticographic spike activity in pediatric patients with epilepsy
Shigekazu Tanaka1, Yutaka Oda1, Masayoshi Ryokai1
1Department of Anesthesiology, Osaka City General Hospital, Osaka, Japan.
Insights
Higher sevoflurane concentrations (1.5 MAC) increased electrocorticogram (ECoG) spike activity and suppression duration in pediatric epilepsy patients. This contrasts with previous findings in adults, highlighting age-specific anesthetic effects on ECoG.
Area of Science:
- Anesthesiology
- Neuroscience
- Epileptology
Background:
- Electrocorticogram (ECoG) spike activity is known to increase with 1.5 minimum alveolar concentration (MAC) sevoflurane in adults with epilepsy.
- The impact of sevoflurane concentration on ECoG in pediatric epilepsy patients remains less understood.
Purpose of the Study:
- To investigate the effects of sevoflurane concentration on ECoG spike activity in children undergoing epilepsy surgery.
- To evaluate sevoflurane's impact on baseline ECoG, including burst suppression, in pediatric epilepsy patients.
Main Methods:
- Eleven children (3-18 years) with intractable epilepsy undergoing surgery were studied.
- ECoG was recorded under sevoflurane anesthesia at 2.5% and then age-adjusted 1.5 MAC (3.1-3.4%).
- Spike frequency, ECoG median frequency, and burst suppression duration were compared between the two sevoflurane concentrations.
Main Results:
- 1.5 MAC sevoflurane significantly increased the number of leads with spikes and the average spike rate compared to 2.5% sevoflurane.
- Median ECoG frequency decreased, and the duration of ECoG suppression (≥ 1 second) significantly increased at 1.5 MAC sevoflurane.
Conclusions:
- Sevoflurane at 1.5 MAC demonstrably increases ECoG spike activity and suppression duration in pediatric epilepsy patients.
- The findings indicate that higher sevoflurane concentrations alter ECoG patterns, with implications for anesthetic management in pediatric epilepsy surgery.
Background:
Electrocorticogram (ECoG) spike activity is enhanced under general anesthesia with 1.5 minimum alveolar concentration (MAC) sevoflurane compared with lower concentrations in adult patients with epilepsy. However, the effect of concentration of sevoflurane on ECoG in children with epilepsy is less known.
Aims:
The primary endpoint was to investigate the effects of sevoflurane on ECoG spike activity in pediatric patients undergoing epilepsy surgery. The secondary endpoint was to examine its effects on baseline ECoG including burst suppression.
Methods:
Children of age 3-18 years with medically intractable epilepsy undergoing corpus callosotomy or resection of the epileptic foci (n = 11) were enrolled. Electrodes were placed on the brain surface and ECoG was recorded under anesthesia with endtidal carbon dioxide tension at 30 mmHg and sevoflurane at 2.5%, followed by age-adjusted 1.5 MAC (3.1-3.4%) for 10 min. The number of leads with spikes, the average number of spikes per lead per minute, median frequency of ECoG, and duration of suppression of ECoG ≥ 1 s were compared between 2.5% and 1.5 MAC sevoflurane.
Results:
The number of leads with spikes increased [11 vs 14, P = 0.003, difference in mean (95% CI) is 3 (2-5)], and the average number of spikes increased [9 vs 14·lead-1 ·min-1 , P = 0.003, difference in mean (95% CI) is 5 (2-8) lead-1 ·min-1 ] under anesthesia with 1.5 MAC compared with 2.5% sevoflurane. Median frequency was decreased [2.8 Hz vs 2.0 Hz, P = 0.003, difference in mean (95% CI) is 0.8 (0.4-1.2) Hz], and the duration of suppression was increased [105 s vs 262 s, P < 0.001, difference in mean (95% CI) is 156 (90-223) s] with 1.5 MAC compared with 2.5% sevoflurane.
Conclusions:
Sevoflurane at 1.5 MAC significantly increased the extent and the number of spikes, prolonged the duration of suppression, and decreased median frequency of ECoG compared with those at 2.5% sevoflurane.
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