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Continuous infusion of lidocaine in pediatric colonoscopy: A randomized double-blind placebo-controlled study
Chao Yuan1, Chengli Wang2, Jiayao Wu1
1Department of Anesthesiology, Guangdong Women and Children Hospital, China.
Insights
Intravenous lidocaine significantly reduced propofol and sufentanil doses during pediatric colonoscopy. This sedation method also shortened recovery time and decreased hypoxemia risk.
Area of Science:
- Anesthesiology
- Pediatric Gastroenterology
Background:
- Propofol is a common sedative for pediatric colonoscopy.
- Intravenous lidocaine can reduce pain and sedative needs in surgical settings.
Purpose of the Study:
- To evaluate the impact of intravenous lidocaine on sedation requirements, oxygen saturation, pain, and recovery during pediatric colonoscopy.
Main Methods:
- A randomized, double-blind, placebo-controlled study involving 40 children (3-10 years).
- Patients received propofol and sufentanil, with either intravenous lidocaine or saline infusion.
- Primary outcomes included propofol/sufentanil doses and oxygen desaturation events.
Main Results:
- Lidocaine significantly reduced propofol (1.8 vs. 3.0 mg/kg) and sufentanil (0.06 vs. 0.1 μg/kg) requirements.
- Oxygen desaturation events were fewer in the lidocaine group (1 vs. 6).
- Recovery time was significantly shorter with lidocaine (13.3 vs. 19.2 min).
Conclusions:
- Continuous intravenous lidocaine infusion effectively reduces sedative and analgesic needs during pediatric colonoscopy.
- Lidocaine administration improves patient safety by decreasing hypoxemia risk and shortening recovery.
- No significant difference in post-procedure pain was observed between groups.
Background:
Propofol is commonly used for providing procedural sedation during pediatric colonoscopy. Intravenous (i.v.) lidocaine can mitigate visceral pain and reduce propofol requirements during surgery. The aim of this study is to investigate the effect of i.v. lidocaine on perioperative propofol and sufentanil dose, pulse oxygen saturation, postoperative pain score, and recovery time during pediatric colonoscopy.
Methods:
We designed a randomized, double-blind, placebo-controlled study and enrolled 40 children aged from 3 to 10 years who underwent colonoscopy. After titration of propofol to achieve unconsciousness, the patients were given i.v. lidocaine (1.5 mg/kg later 2 mg/kg/hour) or the same volume of saline. Sedation was standardized and combined propofol with sufentanil. The primary outcome variables were intraoperative propofol and sufentanil requirements, and the number of oxygen desaturation episodes. Secondary outcome variables were recovery time after colonoscopy and post-colonoscopy pain.
Results:
Lidocaine infusion resulted in a significant reduction in propofol requirements: (median (quartile) 1.8 (1.5-2.0) vs. 3.0 (2.8-3.3) mg/kg respectively; P < 0.001) and sufentanil requirements: (median (quartile) 0.06 (0.05-0.08) vs. 0.1 (0.1-0.1) μg/kg respectively; P < 0.001). The number of subjects who experienced oxygen desaturation below 95% in the lidocaine group was also significantly less than that in the control group: 1 vs. 6 (P = 0.04). The mean (SD) recovery time was significantly shorter in the lidocaine group: (19.2 (2.6) vs. 13.3 (2.6) min respectively; P < 0.001). There was no significant difference in post-colonoscopy pain.
Conclusion:
Continuous infusion of lidocaine resulted in reduction of propofol and sufentanil requirements, recovery time, and risk of hypoxemia during pediatric colonoscopy.
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