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Research Article

Deep neuromuscular blocking and sugammadex reversing-drug is an efficient strategy permitting successful laparoscopic surgery under low insufflation pressure: Prospective multicenter study

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Pages 883-893 | Received 19 Sep 2023, Accepted 11 Nov 2023, Published online: 23 Nov 2023

References

  • Jolly S, Kundu N, Rathnayake S. A case of mistaken identity: bile duct masquerading as gallbladder. J Surg Case Rep. 2023;2023(1):rjad001. doi: 10.1093/jscr/rjad001
  • Paek C, Yi J, Lee B, et al. No supplemental muscle relaxants are required during propofol and remifentanil total intravenous anesthesia for laparoscopic pelvic surgery. J Laparoendosc Adv Surg Tech A. 2009;19(1):33–37. doi: 10.1089/lap.2008.0051
  • Eva I, Rosario V, Guglielmo R, et al. Laparoscopic surgery: a randomised controlled trial comparing intraoperative hemodynamic parameters and arterial-blood gas changes at two different pneumoperitoneal pressure values. Ann Med Surg. 2022;81:104562. doi: 10.1016/j.amsu.2022.104562
  • Smith RB, Biller E, Hu C, et al. Impact of pneumoperitoneum pressure during laparoscopic hysterectomy: a randomized controlled trial.Eur. J Obstet Gynecol Reprod Biol. 2023;280:73–77. doi: 10.1016/j.ejogrb.2022.11.011
  • Ortenzi M, MontorFi G, Sartori A, et al. Low-pressure versus standard-pressure pneumoperitoneum in laparoscopic cholecystectomy: a systematic review and meta-analysis of randomized controlled trials. Surg Endosc. 2022;36(10):7092–7113. doi: 10.1007/s00464-022-09201-1
  • Jiang M, Zhao G, Huang A, et al. Comparison of a new gasless method and the conventional CO2 pneumoperitoneum method in laparoendoscopic single-site cholecystectomy: a prospective randomized clinical trial. Updates Surg. 2021;73(6):2231–2238. doi: 10.1007/s13304-021-01154-9
  • Saway JP, McCaul M, Mulekar M, et al. Review of outcomes of low verses standard pressure pneumoperitoneum in laparoscopic surgery. Am Surg. 2022;88(8):1832–1837. doi: 10.1177/00031348221084956
  • Park SE, Hong TH. The effectiveness of extremely low-pressure pneumoperitoneum on pain reduction after robot-assisted cholecystectomy. Asian J Surg. 2023;46(1):539–544. doi: 10.1016/j.asjsur.2022.06.077
  • Kirmeier E, Eriksson LI, Lewald H, et al. Post-anaesthesia pulmonary complications after use of muscle relaxants (POPULAR): a multicenter, prospective observational study. Lancet Respir Med. 2019;7(2):129–140. doi: 10.1016/S2213-2600(18)30294-7
  • Lowen D, Hodgson R, Tacey M, et al. Does deep neuromuscular blockade provide improved outcomes in low pressure laparoscopic colorectal surgery? A single blinded randomized pilot study. ANZ J Surg. 2022;92(6):1447–1453. doi: 10.1111/ans.17458
  • Cappellini I, Picciafuochi F, Ostento D, et al. Recovery of muscle function after deep neuromuscular block by means of diaphragm ultrasonography and adductor of pollicis acceleromyography with comparison of neostigmine vs. sugammadex as reversal drugs: study protocol for a randomized controlled trial. Trials. 2018;19(1):135. doi: 10.1186/s13063-018-2525-7
  • Ozbilgin S, Kuvaki B, Şimşek H, et al. Comparison of airway management without neuromuscular blockers in laparoscopic gynecological surgery. Medicine (Baltimore). 2021;100(7):e24676. doi: 10.1097/MD.0000000000024676
  • Valencia Morales DJ, Stewart B, Heller S, et al. Urinary retention following Inguinal Herniorrhaphy: role of neuromuscular blockade reversal. Surg Laparosc Endosc Percutan Tech. 2021;31(5):613–617. doi: 10.1097/SLE.0000000000000962
  • Faul F, Erdfelder E, Lang AG, et al. G*power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Methods. 2007;39(2):175–191. doi: 10.3758/BF03193146
  • Barrio J, Errando C, Miguel G, et al. Effect of depth of neuromuscular blockade on the abdominal space during pneumoperitoneum establishment in laparoscopic surgery. J Clin Anesth. 2016;34:197–203. doi: 10.1016/j.jclinane.2016.04.017
  • Dubois F, Icard P, Berthelot G, et al. Coelioscopic cholecystectomy preliminary report of 36 cases. Ann Surg. 1995;211(1):60–62. doi: 10.1097/00000658-199001000-00010
  • Royse CF, Newman S, Chung F, et al. Development and feasibility of a scale to assess postoperative recovery: the post-operative quality recovery scale. Anesthesiology. 2010;113(4):892–905. doi: 10.1097/ALN.0b013e3181d960a9
  • Amorim P, Lagarto F, Gomes B, et al. Neostigmine vs. sugammadex: observational cohort study comparing the quality of recovery using the postoperative quality recovery scale. Acta Anaesthesiol Scand. 2014;58(9):1101–1110. doi: 10.1111/aas.12389
  • Aldrete JA. The post-anesthesia recovery score revisited. J Clin Anesth. 1995;7(1):89–91. doi: 10.1016/0952-8180(94)00001-k
  • Williamson A, Hoggart B. Pain: a review of three commonly used pain rating scales. J Clin Nurs. 2005;14(7):798–804. doi: 10.1111/j.1365-2702.2005.01121.x
  • Watcha MF. White PF: postoperative nausea and vomiting. Its etiology, treatment, and prevention. Anesthiology. 1992;77(1):162–184. doi: 10.1097/00000542-199207000-00023
  • Garbe C, Drechsler S, Fiedler H, et al. Dose comparison of tropisetron (navoban) 5 mg and 10 mg orally in the prophylaxis of dacarbazine-induced nausea and emesis. Semin Oncol. 1994 21(5 Suppl 9):12–16.
  • Madsen MV, Istre O, Staehr-Rye A, et al. Postoperative shoulder pain after laparoscopic hysterectomy with deep neuromuscular blockade and low-pressure pneumoperitoneum: a randomised controlled trial. Eur J Anaesthesiol. 2016;33(5):341–347. doi: 10.1097/EJA.0000000000000360
  • Krijtenburg P, Bruintjes M, Fütterer J, et al. MRI measurement of the effects of moderate and deep neuromuscular blockade on the abdominal working space during laparoscopic surgery, a clinical study. BMC Anesthesiol. 2023;23(1):238. doi: 10.1186/s12871-023-02201-1
  • Oh S, Kwon W, Park S, et al. Comparison of operating conditions, postoperative pain and recovery, and overall satisfaction of surgeons with deep vs. No neuromuscular blockade for spinal surgery under general anesthesia: a prospective randomized controlled trial. J Clin Med. 2019;8(4):498. doi: 10.3390/jcm8040498
  • Kathopoulis N, Protopapas A, Stamatakis E, et al. Deep versus Moderate Neuromuscular Blockade in Gynecologic Laparoscopic Operations: Randomized Controlled Trial. J Pers Med. 2022;12(4):561. doi: 10.3390/jpm12040561
  • Zheng J, Du L, Zhang L, et al. Deep neuromuscular block for endolaryngeal surgery: a systematic review and meta-analysis. Laryngoscope. 2023;133(9):2055–2065. doi: 10.1002/lary.30561
  • Seo IY, Oh T, Lee C. Is the amount of carbon dioxide gas used in urologic laparoscopic surgeries associated with postoperative pain? Investig Clin Urol. 2020;61(3):284–290. doi: 10.4111/icu.2020.61.3.284
  • Albers K, Polat F, Helder L, et al. RECOVER study collaborators: quality of recovery and innate immune homeostasis in patients undergoing low-pressure versus standard-pressure pneumoperitoneum during laparoscopic colorectal surgery (RECOVER): a randomized controlled trial. Ann Surg. 2022;276(6):e664–e673. doi: 10.1097/SLA.0000000000005491
  • Zhang Y, Li Y, Huang W, et al. Utilization of deep neuromuscular blockade combined with reduced abdominal pressure in laparoscopic radical gastrectomy for gastric cancer: an academic perspective. World J Gastrointest Surg. 2023;15(7):1405–1415. doi: 10.4240/wjgs.v15.i7.1405
  • Tang X, Wu Y, Chen Q, et al. Deep neuromuscular block attenuates chronic postsurgical pain and enhances long-term postoperative recovery after spinal surgery: a randomized controlled trial. Pain Ther. 2023;12(4):1055–1064. doi: 10.1007/s40122-023-00528-8
  • Chang HC, Liu SY, Lee MJ, et al. Sugammadex reversal of muscle relaxant blockade provided less post-anesthesia care unit adverse effects than neostigmine/glycopyrrolate. J Formos Med Assoc. 2022;121(12):2639–2643. doi: 10.1016/j.jfma.2022.04.017
  • Tang J, He R, Zhang L, et al. Safety and efficacy of 4 mg·kg− 1 sugammadex for simultaneous pancreas-kidney transplantation recipients: a prospective randomized trial. Ann Transplant. 2023;28:e940211. doi: 10.12659/AOT.940211
  • Fuchs-Buder T, Romero C, Lewald H, et al. Peri-operative management of neuromuscular blockade: a guideline from the European Society of Anaesthesiology and Intensive care. Eur J Anaesthesiol. 2023;40(2):82–94. doi: 10.1097/EJA.0000000000001769
  • Cui J, Yao L, Wu J, et al. Effect of sugammadex on postoperative nausea and vomiting after surgery for intracranial aneurysm. Zhonghua Wai Ke Za Zhi. 2023;61(8):700–706. doi: 10.3760/cma.j.cn112139-20230111-00016
  • Tsai Y, Chen C, Wong H, et al. Comparison of neostigmine and sugammadex for hemodynamic parameters in neurointerventional anesthesia. Front Neurol. 2023;14:1045847. doi: 10.3389/fneur.2023.1045847
  • Hsieh Y, Lin C, Liu Y, et al. The effect of sugammadex versus neostigmine on postoperative nausea and vomiting: a meta-analysis of randomized controlled trials with trial sequential analysis. Minerva Anestesiol. 2023;89(5):434–444. doi: 10.23736/S0375-9393.22.16972-5
  • Ding X, Zhu X, Zhao C, et al. Use of sugammadex is associated with reduced incidence and severity of postoperative nausea and vomiting in adult patients with obesity undergoing laparoscopic bariatric surgery: a post-hoc analysis. BMC Anesthesiol. 2023;23(1):163. doi: 10.1186/s12871-023-02123-y
  • Deljou A, Soleimani J, Sprung J, et al. Effects of reversal technique for neuromuscular paralysis on time to recovery of bowel function after Craniotomy. Am Surg. 2023;89(5):1605–1609. doi: 10.1177/00031348211058631
  • Azimaraghi O, Ahrens E, Wongtangman K, et al. Association of sugammadex reversal of neuromuscular block and postoperative length of stay in the ambulatory care facility: a multicentre hospital registry study. Br J Anaesth. 2023;130(3):296–304. doi: 10.1016/j.bja.2022.10.044
  • Tan J, He J, Wang L, et al. Analysis of the association of sugammadex with the length of hospital stay in patients undergoing abdominal surgery: a retrospective study. BMC Anesthesiol. 2023;23(1):32. doi: 10.1186/s12871-023-01979-4