REFERENCES

1. Sung H, Ferlay J, Siegel RL, et al. Global cancer statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA Cancer J Clin 2021;71:209-49.

2. Siegel RL, Miller KD, Fuchs HE, Jemal A. Cancer statistics, 2022. CA Cancer J Clin 2022;72:7-33.

3. National Comprehensive Cancer Network. Esophageal and esophagogastric junction cancers. Available from: https://www.nccn.org/guidelines/guidelines-detail?category=1&id=1433. [Last accessed on 13 Oct 2023].

4. Cuschieri A, Shimi S, Banting S. Endoscopic oesophagectomy through a right thoracoscopic approach. J R Coll Surg Edinb 1992;37:7-11.

5. Espinoza-Mercado F, Imai TA, Borgella JD, et al. Does the approach matter? Comparing survival in robotic, minimally invasive, and open esophagectomies. Ann Thorac Surg 2019;107:378-85.

6. Biere SSAY, Cuesta MA, van der Peet DL. Minimally invasive versus open esophagectomy for cancer: a systematic review and meta-analysis. Minerva Chir 2009;64:121-33.

7. Nagpal K, Ahmed K, Vats A, et al. Is minimally invasive surgery beneficial in the management of esophageal cancer? A meta-analysis. Surg Endosc 2010;24:1621-9.

8. Sgourakis G, Gockel I, Radtke A, et al. Minimally invasive versus open esophagectomy: meta-analysis of outcomes. Dig Dis Sci 2010;55:3031-40.

9. Dantoc M, Cox MR, Eslick GD. Evidence to support the use of minimally invasive esophagectomy for esophageal cancer: a meta-analysis. Arch Surg 2012;147:768-76.

10. Yibulayin W, Abulizi S, Lv H, Sun W. Minimally invasive oesophagectomy versus open esophagectomy for resectable esophageal cancer: a meta-analysis. World J Surg Oncol 2016;14:304.

11. Guo W, Ma X, Yang S, et al. Combined thoracoscopic-laparoscopic esophagectomy versus open esophagectomy: a meta-analysis of outcomes. Surg Endosc 2016;30:3873-81.

12. Lv L, Hu W, Ren Y, Wei X. Minimally invasive esophagectomy versus open esophagectomy for esophageal cancer: a meta-analysis. Onco Targets Ther 2016;9:6751-62.

13. Xiong WL, Li R, Lei HK, Jiang ZY. Comparison of outcomes between minimally invasive oesophagectomy and open oesophagectomy for oesophageal cancer. ANZ J Surg 2017;87:165-70.

14. Biere SS, van Berge Henegouwen MI, Maas KW, et al. Minimally invasive versus open oesophagectomy for patients with oesophageal cancer: a multicentre, open-label, randomised controlled trial. Lancet 2012;379:1887-92.

15. Biere SS, Maas KW, Bonavina L, et al. Traditional invasive vs. minimally invasive esophagectomy: a multi-center, randomized trial (TIME-trial). BMC Surg 2011;11:2.

16. van der Sluis PC, Schizas D, Liakakos T, van Hillegersberg R. Minimally invasive esophagectomy. Dig Surg 2020;37:93-100.

17. Shen T, Zhang Y, Cao Y, Li C, Li H. Robot-assisted Ivor Lewis esophagectomy (RAILE): a review of surgical techniques and clinical outcomes. Front Surg 2022;9:998282.

18. Grimminger PP, Staubitz JI, Perez D, et al. Multicenter experience in robot-assisted minimally invasive esophagectomy - a comparison of hybrid and totally robot-assisted techniques. J Gastrointest Surg 2021;25:2463-9.

19. Giulini L, Nasser CA, Tank J, Papp M, Stein HJ, Dubecz A. Hybrid robotic versus hybrid laparoscopic Ivor Lewis oesophagectomy: a case-matched analysis. Eur J Cardiothorac Surg 2021;59:1279-85.

20. Egberts JH, Biebl M, Perez DR, et al. Robot-assisted oesophagectomy: recommendations towards a standardised Ivor Lewis procedure. J Gastrointest Surg 2019;23:1485-92.

21. Gutierrez M, Stuparich M, Behbehani S, Nahas S. Does closure of fascia, type, and location of trocar influence occurrence of port site hernias? A literature review. Surg Endosc 2020;34:5250-8.

22. Chouliaras K, Hochwald S, Kukar M. Robotic-assisted Ivor Lewis esophagectomy, a review of the technique. Updates Surg 2021;73:831-8.

23. Zhang Y, Xiang J, Han Y, et al. Initial experience of robot-assisted Ivor-Lewis esophagectomy: 61 consecutive cases from a single Chinese institution. Dis Esophagus 2018;31:doy048.

24. Ninomiya I, Okamoto K, Yamaguchi T, et al. Optimization of robot-assisted thoracoscopic esophagectomy in the lateral decubitus position. Esophagus 2021;18:482-8.

25. Pham TH, Melton SD, McLaren PJ, et al. Laparoscopic ischemic conditioning of the stomach increases neovascularization of the gastric conduit in patients undergoing esophagectomy for cancer. J Surg Oncol 2017;116:391-7.

26. Nakamura K, Suda K, Akamatsu H, et al. Impact of the Kocher maneuver on anastomotic leak after esophagogastrostomy in combined thoracoscopic-laparoscopic esophagectomy. Fujita Med J 2019;5:36-44.

27. Nguyen NT, Dholakia C, Nguyen XM, Reavis K. Outcomes of minimally invasive esophagectomy without pyloroplasty: analysis of 109 cases. Am Surg 2010;76:1135-8.

28. Giugliano DN, Berger AC, Meidl H, et al. Do intraoperative pyloric interventions predict the need for postoperative endoscopic interventions after minimally invasive esophagectomy? Dis Esophagus 2017;30:1-8.

29. Fuchs HF, Broderick RC, Harnsberger CR, et al. Intraoperative endoscopic botox injection during total esophagectomy prevents the need for pyloromyotomy or dilatation. J Laparoendosc Adv Surg Tech A 2016;26:433-8.

30. Bolger JC, Lau H, Yeung JC, Darling GE. Omission of intraoperative pyloric procedures in minimally invasive esophagectomy: assessing the impact on patients. Dis Esophagus 2023;36:doac061.

31. Heid CA, Lopez V, Kernstine K. How I do it: robotic-assisted Ivor Lewis esophagectomy. Dis Esophagus 2020;33:doaa070.

32. Meredith K, Huston J, Andacoglu O, Shridhar R. Safety and feasibility of robotic-assisted Ivor-Lewis esophagectomy. Dis Esophagus 2018;31:doy005.

33. Irino T, Tsai JA, Ericson J, Nilsson M, Lundell L, Rouvelas I. Thoracoscopic side-to-side esophagogastrostomy by use of linear stapler-a simplified technique facilitating a minimally invasive Ivor-Lewis operation. Langenbecks Arch Surg 2016;401:315-22.

34. Egberts JH, Stein H, Aselmann H, Hendricks A, Becker T. Fully robotic da Vinci Ivor-Lewis esophagectomy in four-arm technique-problems and solutions. Dis Esophagus 2017;30:1-9.

35. Peri A, Furbetta N, Viganò J, et al. Technical details for a robot-assisted hand-sewn esophago-gastric anastomosis during minimally invasive Ivor Lewis esophagectomy. Surg Endosc 2022;36:1675-82.

36. Aiolfi A, Sozzi A, Bonitta G, et al. Linear- versus circular-stapled esophagogastric anastomosis during esophagectomy: systematic review and meta-analysis. Langenbecks Arch Surg 2022;407:3297-309.

37. Deng XF, Liu QX, Zhou D, Min JX, Dai JG. Hand-sewn vs linearly stapled esophagogastric anastomosis for esophageal cancer: a meta-analysis. World J Gastroenterol 2015;21:4757-64.

38. Kukar M, Ben-David K, Peng JS, et al. Minimally invasive Ivor Lewis esophagectomy with linear stapled anastomosis associated with low leak and stricture rates. J Gastrointest Surg 2020;24:1729-35.

39. Fabbi M, van Berge Henegouwen MI, Fumagalli Romario U, et al. End-to-side circular stapled versus side-to-side linear stapled intrathoracic esophagogastric anastomosis following minimally invasive Ivor-Lewis esophagectomy: comparison of short-term outcomes. Langenbecks Arch Surg 2022;407:2681-92.

40. Schlottmann F, Angeramo CA, Bras Harriott C, Casas MA, Herbella FAM, Patti MG. Transthoracic esophagectomy: hand-sewn versus side-to-side linear-stapled versus circular-stapled anastomosis: a systematic review and meta-analysis. Surg Laparosc Endosc Percutan Tech 2022;32:380-92.

41. Harustiak T, Pazdro A, Snajdauf M, Stolz A, Lischke R. Anastomotic leak and stricture after hand-sewn versus linear-stapled intrathoracic oesophagogastric anastomosis: single-centre analysis of 415 oesophagectomies. Eur J Cardiothorac Surg 2016;49:1650-9.

42. Carroll PA, Yeung JC, Darling GE. Elimination of routine feeding jejunostomy after esophagectomy. Ann Thorac Surg 2020;110:1706-13.

43. Li HN, Chen Y, Dai L, Wang YY, Chen MW, Mei LX. A Meta-analysis of jejunostomy versus nasoenteral tube for enteral nutrition following esophagectomy. J Surg Res 2021;264:553-61.

44. Akiyama S, Kodera Y, Sekiguchi H, et al. Preoperative embolization therapy for esophageal operation. J Surg Oncol 1998;69:219-23.

45. Siegal SR, Parmar AD, Haisley KR, et al. Gastric ischemic conditioning prior to esophagectomy is associated with decreased stricture rate and overall anastomotic complications. J Gastrointest Surg 2018;22:1501-7.

46. Ladak F, Dang JT, Switzer N, et al. Indocyanine green for the prevention of anastomotic leaks following esophagectomy: a meta-analysis. Surg Endosc 2019;33:384-94.

47. Watson TJ. “Open” esophagectomy. J Gastrointest Surg 2011;15:1500-2.

48. Zhang Y, Han Y, Gan Q, et al. Early Outcomes of robot-assisted versus thoracoscopic-assisted Ivor Lewis esophagectomy for esophageal cancer: a propensity score-matched study. Ann Surg Oncol 2019;26:1284-91.

49. Luketich JD, Alvelo-Rivera M, Buenaventura PO, et al. Minimally invasive esophagectomy: outcomes in 222 patients. Ann Surg 2003;238:486-94; discussion 494-5.

50. Meredith K, Blinn P, Maramara T, Takahashi C, Huston J, Shridhar R. Comparative outcomes of minimally invasive and robotic-assisted esophagectomy. Surg Endosc 2020;34:814-20.

51. Deng HY, Luo J, Li SX, et al. Does robot-assisted minimally invasive esophagectomy really have the advantage of lymphadenectomy over video-assisted minimally invasive esophagectomy in treating esophageal squamous cell carcinoma? A propensity score-matched analysis based on short-term outcomes. Dis Esophagus 2019;32:doy110.

52. Khaitan PG, Vekstein AM, Thibault D, et al. Robotic esophagectomy trends and early surgical outcomes: the US experience. Ann Thorac Surg 2023;115:710-7.

53. Mederos MA, de Virgilio MJ, Shenoy R, et al. Comparison of clinical outcomes of robot-assisted, video-assisted, and open esophagectomy for esophageal cancer: a systematic review and meta-analysis. JAMA Netw Open 2021;4:e2129228.

54. van der Sluis PC, van der Horst S, May AM, et al. Robot-assisted minimally invasive thoracolaparoscopic esophagectomy versus open transthoracic esophagectomy for resectable esophageal cancer: a randomized controlled trial. Ann Surg 2019;269:621-30.

55. Chao YK, Hsieh MJ, Liu YH, Liu HP. Lymph node evaluation in robot-assisted versus video-assisted thoracoscopic esophagectomy for esophageal squamous cell carcinoma: a propensity-matched analysis. World J Surg 2018;42:590-8.

56. He H, Wu Q, Wang Z, et al. Short-term outcomes of robot-assisted minimally invasive esophagectomy for esophageal cancer: a propensity score matched analysis. J Cardiothorac Surg 2018;13:52.

57. Tagkalos E, Goense L, Hoppe-Lotichius M, et al. Robot-assisted minimally invasive esophagectomy (RAMIE) compared to conventional minimally invasive esophagectomy (MIE) for esophageal cancer: a propensity-matched analysis. Dis Esophagus 2020;33:doz060.

58. Yang Y, Zhang X, Li B, et al. Short- and mid-term outcomes of robotic versus thoraco-laparoscopic McKeown esophagectomy for squamous cell esophageal cancer: a propensity score-matched study. Dis Esophagus 2020;33:doz080.

59. Angeramo CA, Bras Harriott C, Casas MA, Schlottmann F. Minimally invasive Ivor Lewis esophagectomy: robot-assisted versus laparoscopic-thoracoscopic technique. Systematic review and meta-analysis. Surgery 2021;170:1692-701.

60. Washington K, Watkins JR, Jay J, Jeyarajah DR. Oncologic resection in laparoscopic versus robotic transhiatal esophagectomy. JSLS 2019;23:e2019.00017.

61. Naffouje SA, Salloum RH, Khalaf Z, Salti GI. Outcomes of open versus minimally invasive Ivor-Lewis esophagectomy for cancer: a propensity-score matched analysis of NSQIP database. Ann Surg Oncol 2019;26:2001-10.

62. Manigrasso M, Vertaldi S, Marello A, et al. Robotic esophagectomy. A systematic review with meta-analysis of clinical outcomes. J Pers Med 2021;11:640.

63. Yun JK, Chong BK, Kim HJ, et al. Comparative outcomes of robot-assisted minimally invasive versus open esophagectomy in patients with esophageal squamous cell carcinoma: a propensity score-weighted analysis. Dis Esophagus 2020;33:doz071.

64. Mariette C, Markar SR, Dabakuyo-Yonli TS, et al. Hybrid minimally invasive esophagectomy for esophageal cancer. N Engl J Med 2019;380:152-62.

65. Chen J, Liu Q, Zhang X, et al. Comparisons of short-term outcomes between robot-assisted and thoraco-laparoscopic esophagectomy with extended two-field lymph node dissection for resectable thoracic esophageal squamous cell carcinoma. J Thorac Dis 2019;11:3874-80.

66. Na KJ, Kang CH, Park S, Park IK, Kim YT. Robotic esophagectomy versus open esophagectomy in esophageal squamous cell carcinoma: a propensity-score matched analysis. J Robot Surg 2022;16:841-8.

67. Straatman J, van der Wielen N, Cuesta MA, et al. Minimally invasive versus open esophageal resection: three-year follow-up of the previously reported randomized controlled trial: the TIME trial. Ann Surg 2017;266:232-6.

68. Nuytens F, Dabakuyo-Yonli TS, Meunier B, et al. Five-year survival outcomes of hybrid minimally invasive esophagectomy in esophageal cancer: results of the MIRO randomized clinical trial. JAMA Surg 2021;156:323-32.

69. van der Sluis PC, Ruurda JP, van der Horst S, et al. Robot-assisted minimally invasive thoraco-laparoscopic esophagectomy versus open transthoracic esophagectomy for resectable esophageal cancer, a randomized controlled trial (ROBOT trial). Trials 2012;13:230.

70. Goense L, van der Sluis PC, van der Horst S, et al. Cost analysis of robot-assisted versus open transthoracic esophagectomy for resectable esophageal cancer. Results of the ROBOT randomized clinical trial. Eur J Surg Oncol 2023;49:106968.

71. Clark J, Sodergren MH, Purkayastha S, et al. The role of robotic assisted laparoscopy for oesophagogastric oncological resection; an appraisal of the literature. Dis Esophagus 2011;24:240-50.

72. Seto Y, Mori K, Aikou S. Robotic surgery for esophageal cancer: merits and demerits. Ann Gastroenterol Surg 2017;1:193-8.

73. Liu CY, Lin CS, Shih CS, Huang YA, Liu CC, Cheng CT. Cost-effectiveness of minimally invasive esophagectomy for esophageal squamous cell carcinoma. World J Surg 2018;42:2522-9.

74. Medbery RL, Force SD. Quality and cost in thoracic surgery. Thorac Surg Clin 2017;27:267-77.

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