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Article

Gradual versus intermittent release of tourniquet in total knee arthroplasty surgery, effects on hemodynamics and acid base parameters: a prospective randomized controlled study

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Pages 234-240 | Received 02 Mar 2021, Accepted 26 Apr 2021, Published online: 14 May 2021

References

  • Masri BA, Eisen A, Duncan CP, et al. Tourniquet-induced nerve compression injuries are caused by high pressure levels and gradients – a review of the evidence to guide safe surgical, pre-hospital and blood flow restriction usage. BMC Biomed Eng. 2020;2(1):1–7.
  • Kumar K, Railton C, Tawfic Q. Tourniquet application during anesthesia: “What we need to know?”. J Anaesthesiol Clin Pharmacol. 2016;32(4):424–430.
  • Fitzgibbons PG, Digiovanni C, Hares S, et al. Safe tourniquet use: a review of the evidence. J Am Acad Orthop Surg. 2012;20(5):310–319.
  • Saied A, Ayatollahi Mousavi A, Arabnejad F, et al. Tourniquet in surgery of the limbs: a review of history, types and complications. Iran Red Crescent Med J. 2015;17(2):e9588.
  • Zarrouki Y, Abouelhassan T, Samkaoui MA. Cardiac arrest after tourniquet deflation in upper limb. Trauma Case Rep. 2017;10(7):1–2.
  • Sharma JP, Salhotra R. Tourniquets in orthopedic surgery. Indian J Orthop. 2012;46(4):377–383.
  • Feng L, Zhang XG, Yang QG, et al. Effects of tourniquet on cardiac function in total knee arthroplasty with trans-esophageal echocardiography. Zhonghua Yi Xue Za Zhi. 2013;93(47):3755–3757.
  • Huang GS, Wang CC, Hu MH, et al. Bilateral passive leg raising attenuates and delays tourniquet deflation-induced hypotension and tachycardia under spinal anaesthesia: a randomised controlled trial. Eur J Anaesthesiol. 2014;31(1):15–22. .
  • Cao Q, He Z, Fan Y, et al. Effects of tourniquet application on enhanced recovery after surgery (ERAS) and ischemia-reperfusion post-total knee arthroplasty: full- versus second half-course application. J Orthop Surg. 2020;28(1):230949901989602.
  • Van M, Olguner C, Koca U, et al. Ischaemic preconditioning attenuates haemodynamic response and lipid peroxidation in lower-extremity surgery with unilateral pneumatic tourniquet application: a clinical pilot study. Adv Ther. 2008;25(4):355–366.
  • Dy CJ, Wilkinson JD, Tamariz L, et al. Influence of preoperative cardiovascular risk factor clusters on complications of total joint arthroplasty. Am J Orthop (Belle Mead NJ). 2011;40(11):560–565.
  • Halladin NL, Zahle FV, Rosenberg J, et al. Interventions to reduce tourniquet-related ischaemic damage inorthopaedic surgery: a qualitative systematic review of randomised trials. Anaesthesia. 2014;69(9):1033–1050.
  • Arnaoutoglou H, Vretzakis G, Souliotis D, et al. The effects of propofol or sevoflurane on free radical production after tourniquet induced ischaemic reperfusion injury during knee arthroplasty. Acta Anaesthesiologica Belgica. 2007;58(1):3–6.
  • Bostankolu E, Ayoglu H, Yurtlu S, et al. Dexmedetomidine did not reduce the effects of tourniquet-induced ischemia-reperfusion injury during general anesthesia. Kaohsiung J Med Sci. 2013;29(2):75–81. .
  • Saricaoglu F, Dal D, Salman AE, et al. Ketamine sedation during spinal anesthesia for arthroscopic knee surgery reduced the ischemia-reperfusion injury markers. Anesth Analg. 2005;101(3):904–909. .
  • Turan R, Yagmurdur H, Kavutcu M, et al. Propofol and tourniquet induced ischaemia reperfusion injury in lower extremity operations. Eur J Anaesthesiol. 2007;24(2):185–189.
  • Lee JY, Kim CJ, Chung MY. Effect of high-dose vitamin C on oxygen free radical production and myocardial enzyme after tourniquet ischaemia-reperfusion injury during bilateral total knee replacement. J Int Med Res. 2010;38(4):1519–1529.
  • Peker K, Ökesli S, Kıyıcı A, et al. The effects of ketamine and lidocaine on free radical production after tourniquet-induced ischemia-reperfusion injury in adults. Ulus Travma Acil Cerrahi Derg. 2019;25(2):111–117.
  • Karaca Ö, Pinar HU, Özgür AF, et al. The effect of pregabalin on tourniquet-induced ischemia-reperfusion injury: a prospective randomized study. Turk J Med Sci. 2019;49(6):1693–1700.
  • Pinar HU, Pinar A, Mavioğlu Ö, et al. Effect of hydroxyethyl starch 130/0.4 on ischemia-reperfusion determinants in minor lower extremity surgery with tourniquet application. J Clin Anesth. 2015;27(2):105–110.
  • Omer K, Nermin G, Ali A, et al. Lesão de isquemia‐reperfusão induzida por torniquete: comparação dos efeitos antioxidantes de propofol e cetamina em doses baixas [Tourniquet-induced ischaemia-reperfusion injury: the comparison of antioxidative effects of small-dose propofol and ketamine]. Rev Bras Anestesiol. 2017;673:246–250. Portuguese. .
  • Leurcharusmee P, Sawaddiruk P, Punjasawadwong Y, et al. The Possible Pathophysiological Outcomes and Mechanisms of Tourniquet-Induced Ischemia-Reperfusion Injury during Total Knee Arthroplasty. Oxid Med Cell Longev. 2018;2018:1–15.
  • Westman B, Weidenhielm L, Rooyackers O, et al. Knee replacement surgery as a human clinical model of the effects of ischaemia/reperfusion upon skeletal muscle. Clin Sci. 2007;113(7):313–318.
  • Murphy T, Walsh PM, Doran PP, et al. Transcriptional responses in the adaptation to ischaemia-reperfusion injury: a study of the effect of ischaemic preconditioning in total knee arthroplasty patients. J Transl Med. 2010;8(1):46.
  • Jason V, Leon S, Gabriella L. Reducing the potential for tourniquet-associated reperfusion injury. Eur J Emerg Med. 2013;20(6):391–396.
  • Almeida M, De Sousa E, De Castro R. Escalonated Tourniquet Deflation Strategy Reduces the Incidence of Hypotension After Total Knee Replacement Surgery: a Randomized Double-Blinded Controlled Trial. ARC J Orthopedics. 2019;4(1):14–18.
  • Koca K, Yurttas Y, Cayci T, et al. The role of preconditioning and N-acetylcysteine on oxidative stress resulting from tourniquet- induced ischemia-reperfusion in arthroscopic knee surgery. J Trauma. 2011;70:717–723.