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Dexmedetomidine for procedural sedation in children with autism and other behavior disorders
Nina Lubisch1, Rudolph Roskos, John W Berkenbosch
1Department of Pediatrics, Chris Evert Children's Hospital, Fort Lauderdale, Florida, USA.
Insights
Dexmedetomidine effectively sedates children with autism and neurobehavioral disorders for procedures. This medication is well-tolerated with minimal adverse events, making it a good option for this population.
Area of Science:
- Pediatric Anesthesiology
- Neurodevelopmental Disorders
Background:
- Dexmedetomidine is increasingly used for pediatric procedural sedation.
- Children with autism and neurobehavioral disorders present unique sedation challenges.
Purpose of the Study:
- To evaluate the efficacy and safety of dexmedetomidine for procedural sedation in children with autism and neurobehavioral disorders.
- To compare sedation outcomes between children with autism and those with other neurobehavioral disorders.
Main Methods:
- Retrospective review of 315 pediatric patients sedated with dexmedetomidine.
- Data collected included sedative doses, efficacy, complications, and age-related factors.
- Concomitant midazolam use was noted and analyzed.
Main Results:
- Dexmedetomidine doses were similar between autism and neurobehavioral groups.
- An age-related decrease in dexmedetomidine dose was observed.
- High procedural success rate (98.7%) with few adverse events, including hypotension, bradycardia, and respiratory obstruction.
Conclusions:
- Dexmedetomidine, with or without midazolam, is effective for sedating children with autism and neurobehavioral disorders.
- The regimen is well-tolerated, with a low incidence of adverse events and recovery-related agitation.
- Dexmedetomidine presents an attractive sedation option for this challenging pediatric population.
Abstract:
Dexmedetomidine has been increasingly in use for pediatric noninvasive procedural sedation. This retrospective study examined experience in children with autism and other neurobehavioral disorders, populations often difficult to sedate. Records of children with autism or neurobehavioral disorders sedated with dexmedetomidine at Chris Evert Children's Hospital and Kosair Children's Hospital were reviewed. Demographic and sedation-related data were collected, including sedative doses, time to sedation, efficacy, and complications. Comparisons of sedative doses, efficacy between autism and neurobehavioral patients, and analysis of age-related factors were performed. In all, 315 patients were sedated, most commonly for magnetic resonance imaging. Mean induction and total dexmedetomidine doses were 1.4 +/- 0.6 and 2.6 +/- 1.6 microg/kg, respectively, with no differences between autism and neurobehavior patients. Most patients (90%) patients received concomitant midazolam. There was an age-related decrease in dexmedetomidine dose, independent of midazolam use. Seven patients required intervention for hypotension, bradycardia, or both, and only one adverse respiratory event (obstruction requiring nasopharyngeal airway placement) occurred. There were two episodes of overt recovery-related agitation. All but four procedures were successfully completed (4/315, or 98.7%). Dexmedetomidine with or without midazolam was an effective sedative in this population. The regimen appeared to be well tolerated with few adverse events, including recovery-related agitation, and appears to be an attractive option for this population.
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