Dieberg G, Smart NA, King N. Minimally invasive cardiac surgery: a systematic review and meta-analysis. Int J Cardiol. 2016;15(223):554–60.
Hage A, Hage F, Al-Amodi H, et al. Minimally invasive versus sternotomy for mitral surgery in the elderly: a systematic review and meta-analysis. Innovations (Phila). 2021;16(4):310–6.
Glauber M, Miceli A, Canarutto D, et al. Minimally invasive aortic valve replacement via right anterior minithoracotomy: early outcomes and learning curve. Ann Thorac Surg. 2011;92(5):1903–9.
Chaves AJJ, Avelino PS, Lopes JB. Comparison of the effects of full median sternotomy vs. mini-incision on postoperative pain in cardiac surgery: a meta-analysis. Braz J Cardiovasc Surg. 2024;39(4):0154.
Hosono M, Yasumoto H, Kuwauchi S, et al. Comprehensive pain control strategy in minimally invasive mitral valve repair. Ann Thorac Cardiovasc Surg. 2022;28(3):180–5.
Kehlet H, Jensen TS, Woolf CJ. Persistent postsurgical pain: risk factors and prevention. Lancet. 2006;367(9522):1618–25.
Zubrzycki M, Liebold A, Skrabal C, et al. Assessment and pathophysiology of pain in cardiac surgery. J Pain Res. 2018;11:1599–611.
Article PubMed PubMed Central Google Scholar
Guimarães-Pereira L, Reis P, Abelha F, et al. Persistent postoperative pain after cardiac surgery: a systematic review with meta-analysis regarding incidence and pain intensity. Pain. 2017;158(10):1869–85.
Krakowski JC, Hallman MJ, Smeltz AM. Persistent pain after cardiac surgery: prevention and management. Semin Cardiothorac Vasc Anesth. 2021;25(4):289–300.
Article PubMed PubMed Central Google Scholar
Ishikawa N, Watanabe G. Robot-assisted cardiac surgery. Ann Thorac Cardiovasc Surg. 2015;21:322–8.
Article PubMed PubMed Central Google Scholar
Onan B. Minimal access in cardiac surgery. Turk Gogus Kalp Damar Cerrahisi Derg. 2020;28:708–24.
Article PubMed PubMed Central Google Scholar
Algoet M, Melvin T, Cerny S, et al. How to advance from minimally invasive coronary artery bypass grafting to totally endoscopic coronary bypass grafting: challenges in Europe versus United States of America. Ann Cardiothorac Surg. 2024;13:397–408.
Article PubMed PubMed Central Google Scholar
Cuartas MM, Davierwala PM. Minimally invasive mitral valve repair. Indian J Thorac Cardiovasc Surg. 2020;36:44–52.
Clowes GH, Neville WE, Hopkins A, Anzola J, Simeone F. Factors contributing to success or failure in the use of a pump oxygenator for complete by-pass of the heart and lung, experimental and clinical. Surgery. 1954;36(3):557–79.
El-Baz N, Goldin M. Continuous epidural infusion of morphine for pain relief after cardiac operations. J Thorac Cardiovasc Surg. 1987;93(6):878–83.
Article CAS PubMed Google Scholar
Chiew JK, Low CJW, Zeng K, et al. Thoracic epidural anesthesia in cardiac surgery: a systematic review, meta-analysis, and trial sequential analysis of randomized controlled trials. Anesth Analg. 2023;137(3):587–600.
Chaney MA. Intrathecal and epidural anesthesia and analgesia for cardiac surgery. Anesth Analg. 2006;102(1):45–64.
Article CAS PubMed Google Scholar
Laferriere-Langlois P, Jeffries S, Harutyunyan R, Hemmerling TM. Epidural catheterization in cardiac surgery: a systematic review and risk assessment of epidural hematoma. Ann Card Anaesth. 2024;27(2):111–20.
Article PubMed PubMed Central Google Scholar
Popping DM, Elia N, Marret E, Remy C, Tramer MR. Protective effects of epidural analgesia on pulmonary complications after abdominal and thoracic surgery: a meta-analysis. Arch Surg. 2008;143(10):990–9.
Horlocker TT, Vandermeuelen E, Kopp SL, et al. Regional anesthesia in the patient receiving antithrombotic or thrombolytic therapy: American Society of Regional Anesthesia and Pain Medicine Evidence-Based Guidelines (Fourth Edition). Reg Anesth Pain Med. 2018;43(3):263–309.
De Cassai A. Thoracic epidural hematoma. Can J Anaesth. 2019;66(3):331–2.
De Cassai A, Correale C, Sandei L. Neuraxial and perineural bleeding after neuraxial techniques: an overview of the last year. Euras J Med. 2020;52(2):211–6.
Yu S, Valencia MB, Roques V, Aljure OD. Regional analgesia for minimally invasive cardiac surgery. J Card Surg. 2019;34(11):1289–96.
Li YW, Li HJ, Li HJ, et al. Delirium in older patients after combined epidural-general anesthesia or general anesthesia for major surgery: a randomized trial. Anesthesiology. 2021;135(2):218–32.
Hansdottir V, Philip J, Olsen MF, et al. Thoracic epidural versus intravenous patient-controlled analgesia after cardiac surgery: a randomized controlled trial on length of hospital stay and patient-perceived quality of recovery. Anesthesiology. 2006;104(1):142–51.
Article CAS PubMed Google Scholar
Kurtoglu M, Ates S, Bakkaloglu B, et al. Epidural anesthesia versus general anesthesia in patients undergoing minimally invasive direct coronary artery bypass surgery/Minimal invazif koroner baypas cerrahisi yapilan hastalarda genel anesteziye karsi epidural anestezi. Anadolu Kardiyoloji Dergisi AKD. 2009;9(1):54–8.
Schachner T, Bonatti J, Balogh D, et al. Aortic valve replacement in the conscious patient under regional anesthesia without endotracheal intubation. J Thorac Cardiovasc Surg. 2003;125(1526):7.
Aybek T, Kessler P, Khan M, et al. Operative techniques in awake coronary artery bypass grafting. J Thorac Cardiovasc Surg. 2003;125(6):1394–400.
Ishikawa N, Watanabe G. Ultra-minimally invasive cardiac surgery: robotic surgery and awake CABG. Surg Today. 2015;45:1–7.
Amat-Santos IJ, Dumont E, Villeneuve J, et al. Effect of thoracic epidural analgesia on clinical outcomes following transapical transcatheter aortic valve implantation. Heart. 2012;98(21):1583–90.
Wardhan R. Update on paravertebral blocks. Curr Opin Anaesthesiol. 2015;28(5):588–92.
Article CAS PubMed Google Scholar
Yeung JH, Gates S, Naidu BV, Wilson MJ, Smith FG. Paravertebral block versus thoracic epidural for patients undergoing thoracotomy. Cochrane Database Syst Rev. 2016;2(2):CD009121.
Karmakar MK. Thoracic paravertebral block. Anesthesiology. 2001;95(3):771–80.
Article CAS PubMed Google Scholar
Marhofer D, Marhofer P, Kettner SC, et al. Magnetic resonance imaging analysis of the spread of local anesthetic solution after ultrasound-guided lateral thoracic paravertebral blockade: a volunteer study. Anesthesiology. 2013;118(5):1106–12.
Article CAS PubMed Google Scholar
Yoshida T, Fujiwara T, Furutani K, Ohashi N, Baba H. Effects of ropivacaine concentration on the spread of sensory block produced by continuous thoracic paravertebral block: a prospective, randomised, controlled, double-blind study. Anaesthesia. 2014;69(3):231–9.
Article CAS PubMed Google Scholar
Dhole S, Mehta Y, Saxena H, Juneja R, Trehan N. Comparison of continuous thoracic epidural and paravertebral blocks for postoperative analgesia after minimally invasive direct coronary artery bypass surgery. J Cardiothorac Vasc Anesth. 2001;15(3):288–92.
Article CAS PubMed Google Scholar
Daly DJ, Myles PS. Update on the role of paravertebral blocks for thoracic surgery: are they worth it? Curr Opin Anesthesiol. 2009;22(1):38–43.
Scarfe AJ, Schuhmann-Hingel S, Duncan JK, et al. Continuous paravertebral block for post-cardiothoracic surgery analgesia: a systematic review and meta-analysis. Eur J Cardiothorac Surg. 2016;50(6):1010–8.
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