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REFERENCES
1. Biere SS, van Berge Henegouwen MI, Maas KW, Bonavina L, Rosman C, et al. Minimally invasive versus open oesophagectomy for
patients with oesophageal cancer: a multicentre, open-label, randomised controlled trial. Lancet 2012;379:1887-92.
2. Puntambekar S, Kenawadekar R, Kumar S, Joshi S, Agarwal G, et al. Robotic transthoracic esophagectomy. BMC Surg 2015;15:47.
3. Safranek PM, Cubitt J, Booth MI, Dehn TC. Review of open and minimal access approaches to oesophagectomy for cancer. Br J Surg
2010;97:1845-53.
4. Straatman J, van der Wielen N, Cuesta MA, Daams F, Roig Garcia J, 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.
5. van der Sluis PC, van der Horst S, May AM, Schippers C, Brosens LAA, 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.
6. Collard JM, Lengele B, Otte JB, Kestens PJ. En bloc and standard esophagectomies by thoracoscopy. Ann Thorac Surg 1993;56:675-9.
7. Melvin WS, Needleman BJ, Krause KR, Schneider C, Wolf RK, et al. Computer-enhanced robotic telesurgery. Initial experience in
foregut surgery. Surg Endosc 2002;16:1790-2.
8. Horgan S, Berger RA, Elli EF, Espat NJ. Robotic-assisted minimally invasive transhiatal esophagectomy. Am Surg 2003;69:624-6.
9. Kernstine KH, DeArmond DT, Karimi M, Van Natta TL, Campos JH, et al. The robotic, 2-stage, 3-field esophagolymphadenectomy. J
Thorac Cardiovasc Surg 2004;127:1847-9.
10. van Hillegersberg R, Boone J, Draaisma WA, Broeders IA, Giezeman MJ, et al. First experience with robot-assisted thoracoscopic
esophagolymphadenectomy for esophageal cancer. Surg Endosc 2006;20:1435-9.
11. Kernstine KH, DeArmond DT, Shamoun DM, Campos JH. The first series of completely robotic esophagectomies with three-field
lymphadenectomy: initial experience. Surg Endosc 2007;21:2285-92.
12. Dunn DH, Johnson EM, Morphew JA, Dilworth HP, Krueger JL, et al. Robot-assisted transhiatal esophagectomy: a 3-year single-center
experience. Dis Esophagus 2013;26:159-66.
13. Cerfolio RJ, Wei B, Hawn MT, Minnich DJ. Robotic esophagectomy for cancer: early results and lessons learned. Semin Thorac
Cardiovasc Surg 2016;28:160-9.
14. He H, Wu Q, Wang Z, Zhang Y, Chen N, 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.
15. Tagkalos E, Goense L, Hoppe-Lotichius M, Ruurda JP, Babic B, 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.
16. van der Sluis PC, Ruurda JP, van der Horst S, Goense L, van Hillegersberg R. Learning curve for robot-assisted minimally invasive
thoracoscopic esophagectomy: results from 312 cases. Ann Thorac Surg 2018;106:264-71.
17. Ladak F, Dang JT, Switzer N, Mocanu V, Tian C, et al. Indocyanine green for the prevention of anastomotic leaks following
esophagectomy: a meta-analysis. Surg Endosc 2019;33:384-94.
18. Okusanya O, Lu M, Luketich JD, Sarkaria IS. Intraoperative near infrared fluorescence imaging for the assessment of the gastric conduit.
J Thorac Dis 2019;11:S750-4.
19. Plat VD, Stam WT, Schoonmade LJ, Heineman DJ, van der Peet DL, et al. Implementation of robot-assisted Ivor Lewis procedure:
Robotic hand-sewn, linear or circular technique? Am J Surg 2020;220:62-8.
20. Zhang H, Wang Z, Zheng Y, Geng Y, Wang F, et al. Robotic side-to-side and end-to-side stapled esophagogastric anastomosis of ivor
lewis esophagectomy for cancer. World J Surg 2019;43:3074-82.
21. Sarkaria IS, Rizk NP, Goldman DA, Sima C, Tan KS, et al. Early quality of life outcomes after robotic-assisted minimally invasive and
open esophagectomy. Ann Thorac Surg 2019;108:920-8.
22. van der Sluis PC, Tagkalos E, Hadzijusufovic E, Babic B, Uzun E, et al. Robot-assisted minimally invasive esophagectomy with
intrathoracic anastomosis (Ivor Lewis): promising results in 100 consecutive patients (the European experience). J Gastrointest Surg
2020; doi: 10.1007/s11605-019-04510-8.
23. Na KJ, Park S, Park IK, Kim YT, Kang CH. Outcomes after total robotic esophagectomy for esophageal cancer: a propensity-matched
comparison with hybrid robotic esophagectomy. J Thorac Dis 2019;11:5310-20.
24. Oshikiri T, Yasuda T, Harada H, Goto H, Oyama M, et al. A new method (the “Bascule method”) for lymphadenectomy along the left
recurrent laryngeal nerve during prone esophagectomy for esophageal cancer. Surg Endosc 2015;29:2442-50.
25. Chao YK, Li ZG, Wen YW, Kim DJ, Park SY, et al. Robotic-assisted esophagectomy vs video-assisted thoracoscopic esophagectomy
(REVATE): study protocol for a randomized controlled trial. Trials 2019;20:346.
26. Chao YK, Wen YW, Chuang WY, Cerfolio RJ. Transition from video-assisted thoracoscopic to robotic esophagectomy: a single surgeon’s
experience. Dis Esophagus 2020;33:doz033.
27. Chen J, Liu Q, Zhang X, Yang H, Tan Z, 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.
28. Konstantinidis IT, Ituarte P, Woo Y, Warner SG, Melstrom K, et al. Trends and outcomes of robotic surgery for gastrointestinal (GI)
cancers in the USA: maintaining perioperative and oncologic safety. Surg Endosc 2019; doi: 10.1007/s00464-019-07284-x.
29. Sheetz KH, Claflin J, Dimick JB. Trends in the adoption of robotic surgery for common surgical procedures. JAMA Netw Open
2020;3:e1918911.