Brown ML, DiNardo JA, Nasr VG. Anesthesia in pediatric patients with congenital heart disease undergoing noncardiac surgery: defining the risk. J Cardiothorac Vasc Anesth. 2020;34:470–8.
Habre W, Disma N, Virag K, Becke K, Hansen TG, Johr M, Leva B, Morton NS, Vermeulen PM, Zielinska M, Boda K, Veyckemans F. Incidence of severe critical events in paediatric anaesthesia (APRICOT): a prospective multicentre observational study in 261 hospitals in Europe. Lancet Respir Med. 2017;5(5):412–25.
Fanaroff JM, Fanaroff AA. Blood pressure disorders in the neonate: hypotension and hypertension. Semin Fetal Neonatal Med. 2006;11:174–81.
Friesen RH. Anesthetic drugs in congenital heart disease. Semin Cardiothorac Vasc Anesth. 2014;18:363–70.
Masui K. Remimazolam besilate, a benzodiazepine, has been approved for general anesthesia!! J Anesth. 2020;34:479–82.
Doi M, Morita K, Takeda J, Sakamoto A, Yamakage M, Suzuki T. Efficacy and safety of remimazolam versus propofol for general anesthesia: a multicenter, single-blind, randomized, parallel-group, phase IIb/III trial. J Anesth. 2020;34(4):543–53.
Xu Q, Wu J, Shan W, Duan G, Lan H. Effects of remimazolam combined with sufentanil on hemodynamics during anesthetic induction in elderly patients with mild hypertension undergoing orthopedic surgery of the lower limbs: a randomized controlled trial. BMC Anesthesiol. 2023;23:311.
Article PubMed PubMed Central CAS Google Scholar
Kam PCA, Cardone D. Propofol infusion syndrome. Anaesthesia. 2007;62:690–701.
Article PubMed CAS Google Scholar
Chan TC, Evans SD, Clark RF. Drug-induced hyperthermia. Crit Care Clin. 1997;13:785–808.
Article PubMed CAS Google Scholar
Gao YQ, Ihmsen H, Hu ZY, Sun W, Fang YB, Wang Z, Schuttler J, Jeleazcov C, Liu HC. Pharmacokinetics of remimazolam after intravenous infusion in anaesthetised children. Br J Anaesth. 2023;131:914–20.
Article PubMed CAS Google Scholar
Shunsuke Yamakita DF, Takechi Y, Yamada T, Iida J, Sawa T. A case of total intravenous anesthesia with remimazolam for pediatric cardiac surgery. Cardiovascular Anesthesia. 2022;26(1):77–80.
Chae D, Kim HC, Song Y, Choi YS, Han DW. Pharmacodynamic analysis of intravenous bolus remimazolam for loss of consciousness in patients undergoing general anaesthesia: a randomised, prospective, double-blind study. Br J Anaesth. 2022;129:49–57.
Article PubMed CAS Google Scholar
Nakanishi T, Sento Y, Kamimura Y, Tsuji T, Kako E, Sobue K. Remimazolam for induction of anesthesia in elderly patients with severe aortic stenosis: a prospective, observational pilot study. BMC Anesthesiol. 2021;21:306.
Article PubMed PubMed Central CAS Google Scholar
Mapleson WW. Effect of age on MAC in humans: a meta-analysis. Br J Anaesth. 1996;76:179–85.
Article PubMed CAS Google Scholar
Schnider TW, Minto CF, Shafer SL, Gambus PL, Andresen C, Goodale DB, Youngs EJ. The influence of age on propofol pharmacodynamics. Anesthesiology. 1999;90:1502–16.
Article PubMed CAS Google Scholar
Masui K, Stöhr T, Pesic M, Tonai T. A population pharmacokinetic model of remimazolam for general anesthesia and consideration of remimazolam dose in clinical practice. J Anesth. 2022;36:493–505.
Doi M, Hirata N, Suzuki T, Morisaki H, Morimatsu H, Sakamoto A. Safety and efficacy of remimazolam in induction and maintenance of general anesthesia in high-risk surgical patients (ASA Class III): results of a multicenter, randomized, double-blind, parallel-group comparative trial. J Anesth. 2020;34(4):491–501.
Kim KM. Remimazolam: pharmacological characteristics and clinical applications in anesthesiology. Anesth Pain Med (Seoul). 2022;17:1–11.
Article PubMed CAS Google Scholar
THE HUMAN PROTEIN ATLAS. RNA expression over view for carboxyl esterase 1 in human: https://www.proteinatlas.org/ENSG00000198848-CES1/tissue (2024). Accessed date 07 May 2024.
Boberg M, Vrana M, Mehrotra A, Pearce RE, Gaedigk A, Bhatt DK, Leeder JS, Prasad B. Age-dependent absolute abundance of hepatic carboxylesterases (CES1 and CES2) by LC-MS/MS proteomics: application to PBPK modeling of oseltamivir in vivo pharmacokinetics in infants. Drug Metab Dispos. 2017;45:216–23.
Article PubMed PubMed Central CAS Google Scholar
Elkomy MH, Drover DR, Glotzbach KL, Galinkin JL, Frymoyer A, Su F, Hammer GB. Pharmacokinetics of morphine and its metabolites in infants and young children after congenital heart surgery. AAPS J. 2016;18:124–33.
Article PubMed CAS Google Scholar
Yuki K, Lee S, Staffa SJ, DiNardo JA. Induction techniques for pediatric patients with congenital heart disease undergoing noncardiac procedures are influenced by cardiac functional status and residual lesion burden. J Clin Anesth. 2018;50:14–7.
Zhao TY, Chen D, Xu ZX, Wang HL, Sun H. Comparison of bispectral index and patient state index as measures of sedation depth during surgeries using remimazolam tosilate. BMC Anesthesiol. 2023;23:208.
Article PubMed PubMed Central CAS Google Scholar
Kim KM, Bang JY, Choi BM, Noh GJ. Assessment of explicit and implicit memories during remimazolam anaesthesia using the process dissociation procedure: a prospective cohort study. Eur J Anaesthesiol. 2023;40:833–40.
Article PubMed PubMed Central CAS Google Scholar
Kiyokawa M, Saito J, Nakai K, Hirota K. A remimazolam and remifentanil anesthetic for a pediatric patient with a medium-chain acyl-coa dehydrogenase deficiency: a case report. A A Pract. 2022;16: e01646.
Horikoshi Y, Kuratani N, Tateno K, Hoshijima H, Nakamura T, Mieda T, Doi K, Nagasaka H. Anesthetic management with remimazolam for a pediatric patient with Duchenne muscular dystrophy. Medicine (Baltimore). 2021;100: e28209.
Article PubMed CAS Google Scholar
Brandt SP, Walsh EC, Cornelissen L, Lee JM, Berde C, Shank ES, Purdon PL. Case studies using the electroencephalogram to monitor anesthesia-induced brain states in children. Anesth Analg. 2020;131:1043–56.
Article PubMed PubMed Central Google Scholar
Ronald S, Litman D. Anesthetic considerations for children with congenital heart disease undergoing noncardiac surgery. Anesthesiol Clin North America. 1997;15:93–103.
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