Continuous Lidocaine Infusion in Thyroid Surgery Using Intraoperative Neurophysiological Monitoring
Summary
Thyroid surgery is a common procedure for the treatment of thyroid tumors, nodules and other related lesions. During this procedure, intraoperative neurophysiological monitoring is used to protect the recurrent laryngeal nerves. For the nerve monitor to work properly, a reduced muscle relaxant dosage is indicated. The main objectives of the anesthesiologist are maintaining deep sedation, analgesia and immobilization during surgery, as well as enhance post-operative recovery. Reduced muscle relaxant use during surgery poses the risk of inadequate immobilization during the operation, which may result in serious surgical complications. Intravenous bolus administration of fentanyl is currently the most popular method to maintain the depth of anesthesia during such operations. However, the side effects include intraoperative hypotension, bradycardia, and postoperative nausea and vomiting. The ultra-short acting remifentanil may be appropriate for inhibiting the bucking reflex during surgery, but the risk of opioid-induced hyperalgesia and opioid tolerance after surgery has been reported. In recent studies, intravenous lidocaine has been shown to increase the depth of anesthesia and provide analgesia, with no muscle relaxing effect. The aim of this study is to examine the depth of anesthesia, surgical operating conditions, and the recovery profile with the use of a continuous lidocaine infusion.
Timeline
- Start
- 2024-02-07
- Primary completion
- 2027-03-31
- Completion
- 2027-03-31
Publications
- Background Choi GJ, Kang H, Ahn EJ, Oh JI, Baek CW, Jung YH, Kim JY. Clinical Efficacy of Intravenous Lidocaine for Thyroidectomy: A Prospective, Randomized, Double-Blind, Placebo-Controlled Trial. World J Surg. 2016 Dec;40(12):2941-2947. doi: 10.1007/s00268-016-3619-6.
- Background De Oliveira GS Jr, Fitzgerald P, Streicher LF, Marcus RJ, McCarthy RJ. Systemic lidocaine to improve postoperative quality of recovery after ambulatory laparoscopic surgery. Anesth Analg. 2012 Aug;115(2):262-7. doi: 10.1213/ANE.0b013e318257a380. Epub 2012 May 14.
- Background De Oliveira GS Jr, Duncan K, Fitzgerald P, Nader A, Gould RW, McCarthy RJ. Systemic lidocaine to improve quality of recovery after laparoscopic bariatric surgery: a randomized double-blinded placebo-controlled trial. Obes Surg. 2014 Feb;24(2):212-8. doi: 10.1007/s11695-013-1077-x.
- Background Beaussier M, Delbos A, Maurice-Szamburski A, Ecoffey C, Mercadal L. Perioperative Use of Intravenous Lidocaine. Drugs. 2018 Aug;78(12):1229-1246. doi: 10.1007/s40265-018-0955-x.
- Background Lee JH, Koo BN, Jeong JJ, Kim HS, Lee JR. Differential effects of lidocaine and remifentanil on response to the tracheal tube during emergence from general anaesthesia. Br J Anaesth. 2011 Mar;106(3):410-5. doi: 10.1093/bja/aeq396. Epub 2011 Jan 2.
- Background Fletcher D, Martinez V. Opioid-induced hyperalgesia in patients after surgery: a systematic review and a meta-analysis. Br J Anaesth. 2014 Jun;112(6):991-1004. doi: 10.1093/bja/aeu137.
- Background Hsieh CY, Tan H, Huang HF, Huang TY, Wu CW, Chang PY, Lu DV, Lu IC. Optimization of Intraoperative Neural Monitoring of the Recurrent Laryngeal Nerve in Thyroid Surgery. Medicina (Kaunas). 2022 Mar 30;58(4):495. doi: 10.3390/medicina58040495.
- Background Govindarajan R, Shah A, Ravikumar S, Reddy SK, Kannan U, Mukerji AN, Cherian JG, Foster C, Livingstone D. Lidocaine Infusion Improves the Functionality of Intraoperative Nerve Monitoring During Thyroid Surgery: A Prospective, Randomized, Double-Blinded Study. J Clin Med Res. 2021 Apr;13(4):214-221. doi: 10.14740/jocmr4458. Epub 2021 Apr 27.
Drugs
| Evaluation | Drug | Modality | Dose | Route |
|---|---|---|---|---|
| Comparator | Fentanyl | Other / unclassified | — | Intravenous |
| Subject | Lidocaine | Other / unclassified | 1.5 mg/kg | Intravenous |
| Comparator | Remifentanil | Small molecule | — | — |