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Sedation for magnetic resonance imaging using propofol with or without ketamine at induction in pediatrics-A
Achim Schmitz1,2, Markus Weiss1,2, Christian Kellenberger2,3
1Department of Anesthesiology, University Children's Hospital, Zurich, Switzerland.
Insights
Adding ketamine to propofol sedation in children for MRI significantly shortens recovery time. This combination offers reliable sedation with a low incidence of adverse events, improving the overall patient experience.
Area of Science:
- Pediatric Anesthesiology
- Pharmacology
- Radiology
Background:
- Deep sedation with propofol is standard for pediatric procedures.
- Optimizing sedation techniques is crucial for patient comfort and procedural success.
Purpose of the Study:
- To compare propofol-only sedation with a combination of ketamine and propofol for pediatric MRI.
- To evaluate clinical effects, recovery time, and safety profiles of different sedation strategies.
Main Methods:
- A double-blinded randomized clinical trial involving 347 children (3 months-10 years) undergoing MRI.
- Two groups: ketamine-propofol (ketamine induction, reduced propofol infusion) vs. propofol-only (higher propofol infusion).
- Primary outcome: time to full recovery; secondary outcomes: induction quality, immobilization, delirium, and adverse events.
Main Results:
- The ketamine-propofol group had significantly shorter recovery times (38 vs. 54 minutes).
- This group also showed better induction quality and higher blood pressure.
- No significant differences in respiratory/cardiovascular side effects, delirium, or nausea/vomiting were observed.
Conclusions:
- Both sedation methods are reliable with minimal side effects.
- Ketamine combined with a reduced propofol infusion rate accelerates postanesthetic recovery in children undergoing MRI.
Introduction:
Deep sedation using propofol has become a standard technique in children. This double-blinded randomized clinical trial aims to compare the clinical effects of propofol-mono-sedation vs a combination of propofol and ketamine at induction and a reduced propofol infusion rate for maintenance in children undergoing diagnostic magnetic resonance imaging.
Methods:
Children aged from 3 months to 10 years scheduled as outpatients for elective magnetic resonance imaging with deep sedation were included. They were randomized into 2 groups, receiving either 1 mg/kg ketamine at induction, then a propofol infusion rate of 5 mg/kg/h or a propofol infusion rate of 10 mg/kg/h without prior ketamine. Time to full recovery (modified Aldrete score = 10) was the primary outcome. Further outcomes were quality of induction, immobilization during image acquisition, recovery, postoperative nausea and vomiting, emergence delirium using the Pediatric Anesthesia Emergence Delirium scale, vital signs and adverse cardiorespiratory events. All patients and parents as well as anesthetists, imaging technicians, and postsedation personnel were blinded. Data are given as median (range).
Results:
In total, 347 children aged 4.0 (0.25-10.9) years, weighing 15.6 (5.3-54) kg, ASA classification I, II, or III (141/188/18) were included. The ketamine-propofol group showed significantly shorter recovery times (38 (22-65) vs 54 (37-77) minutes; median difference 14 (95% CI: 8, 20) minutes; P < .001), better quality of induction, and higher blood pressure, but higher incidence of movement requiring additional sedative drugs. There were no significant differences in respiratory side effects, cardiovascular compromise, emergence delirium, or postoperative nausea and vomiting.
Conclusion:
Both sedation concepts proved to be reliable with a low incidence of side effects. Ketamine at induction with a reduced propofol infusion rate leads to faster postanesthetic recovery.
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