[1] Tan D, Xia H, Sun S, et al. Effect of ancillary drugs on sevoflurane related emergence agitation in children undergoing ophthalmic surgery: a Bayesian network meta-analysis[J]. BMC Anesthesiol, 2019, 19(1):138. DOI: 10.1186/s12871-019-0810-y.
[2] Jiao H, Wang H, Jiang Z, et al. Comparative efficacy of ancillary drugs in sevoflurane-related emergence agitation after paediatric adenotonsillectomy: a Bayesian network meta-analysis[J]. J Clin Pharm Ther, 2020, 45(5):1039-1049. DOI: 10.1111/jcpt.13133.
[3] Ljungqvist O, Scott M, Fearon KC. Enhanced recovery after surgery: a review[J]. JAMA Surg, 2017, 152(3):292-298. DOI: 10.1001/jamasurg.2016.4952.
[4] Zhang YZ, Wang X, Wu JM, et al. Optimal dexmedetomidine dose to prevent emergence agitation under sevoflurane and remifentanil anesthesia during pediatric tonsillectomy and adenoidectomy[J]. Front Pharmacol, 2019, 10:1091. DOI: 10.3389/fphar.2019. 01091.
[5] 许冬妮,刘婷,王培宗,等.静脉输注利多卡因对腹腔镜疝修补术患儿苏醒期躁动的临床观察[J].中山大学学报(医学科学版),2021,42(5):783-789. DOI:10.13471/j.cnki.j.sun.yat-sen.univ(med.sci).2021.0518.
[6] Efune PN, Minhajuddin A, Szmuk P. Incidence and factors contributing to postdischarge nausea and vomiting in pediatric ambulatory surgical cases[J]. Paediatr Anaesth, 2018, 28(3):257-263. DOI: 10.1111/pan.13333.
[7] Kawai M, Kurata S, Sanuki T, et al. The effect of midazolam administration for the prevention of emergence agitation in pediatric patients with extreme fear and non-cooperation undergoing dental treatment under sevoflurane anesthesia, a double-blind, randomized study[J]. Drug Des Devel Ther, 2019, 13:1729-1737. DOI: 10.2147/DDDT.S198123.
[8] 马新刚,薛明喜.右美托咪定应用于小儿腹腔镜疝气手术对苏醒期躁动最佳剂量的影响研究[J].国际医药卫生导报,2020,26(22):3446-3449. DOI:10.3760/cma.j.issn.1007- 1245.2020.22.024.
[9] 方广,张翠红,李有华,等.右美托咪定预防小儿腺样体切除术拔管及烦躁的应用效果[J].国际医药卫生导报,2018,24(13):2012-2015. DOI:10.3760/cma.j.issn.1007-1245. 2018.13.032.
[10] Cummins TR. Setting up for the block: the mechanism underlying lidocaine's use-dependent inhibition of sodium channels[J]. J Physiol, 2007, 582(Pt 1):11. DOI: 10.1113/jphysiol.2007.136671.
[11] Weibel S, Jokinen J, Pace NL, et al. Efficacy and safety of intravenous lidocaine for postoperative analgesia and recovery after surgery: a systematic review with trial sequential analysis[J]. Br J Anaesth, 2016, 116(6):770-783. DOI: 10.1093/bja/aew101.
[12] Dunn LK, Durieux ME. Perioperative use of intravenous lidocaine[J]. Anesthesiology, 2017, 126(4):729-737. DOI: 10.1097/ALN.0000000000001527.
[13] Koppert W, Weigand M, Neumann F, et al. Perioperative intravenous lidocaine has preventive effects on postoperative pain and morphine consumption after major abdominal surgery[J]. Anesth Analg, 2004, 98(4):1050-1055. DOI: 10.1213/01.ANE.0000104582.71710.EE.
[14] Vahidi E, Shakoor D, Aghaie Meybodi M, et al. Comparison of intravenous lidocaine versus morphine in alleviating pain in patients with critical limb ischaemia[J]. Emerg Med J, 2015, 32(7):516-519. DOI: 10.1136/emermed- 2014-203944.
[15] Lauretti GR. Mechanisms of analgesia of intravenous lidocaine[J]. Rev Bras Anestesiol, 2008, 58(3):280-286. DOI: 10.1590/s0034-70942008000300011.
[16] Yuan C, Wang C, Wu J, et al. Continuous infusion of lidocaine in pediatric colonoscopy: a randomized double-blind placebo-controlled study[J]. Saudi J Gastroenterol, 2022, 28(1):54-59. DOI: 10.4103/sjg.sjg_275_21.
[17] Echevarría GC, Altermatt FR, Paredes S, et al. Intra-operative lidocaine in the prevention of vomiting after elective tonsillectomy in children: a randomised controlled trial[J]. Eur J Anaesthesiol, 2018, 35(5):343-348. DOI: 10.1097/EJA.0000000000000807.
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