Robotic Versus Laparoscopic Total Mesorectal Excision for Sphincter-Saving Surgery: Results of a Single-Center Series of 400 Consecutive Patients and Perspectives

Annals of Surgical Oncology - Tập 25 Số 12 - Trang 3572-3579 - 2018
Philippe Rouanet1, Martin Bertrand2,1, Marta Jarlier3, Anne Mourrégot1, Drissa Traoré1, Christophe Taoum1, Hélène de Forges3, Pierre‐Emmanuel Colombo1,4
1Département de chirurgie
2Centre Hospitalier Universitaire de Nîmes
3CRLCC Val d'Aurelle - Paul Lamarque
4Institut de recherche en cancérologie de Montpellier

Tóm tắt

Từ khóa


Tài liệu tham khảo

Park EJ, Cho MS, Baek SJ, et al. Long-term oncologic outcomes of robotic low anterior resection for rectal cancer: a comparative study with laparoscopic surgery. Ann Surg. 2015;261:129–137.

Gómez Ruiz M, Alonso Martin J, Cagigas Fernández C, et al. Short- and mid-term outcomes of robotic-assisted total mesorectal excision for the treatment of rectal cancer. Our experience after 198 consecutive cases. Eur J Surg Oncol. 2016;42:848–854.

Kang J, Yoon KJ, Min BS, et al. The impact of robotic surgery for mid and low rectal cancer: a case-matched analysis of a 3-arm comparison—open, laparoscopic, and robotic surgery. Ann Surg. 2013;257:95–101.

Hara M, Sng K, Yoo BE, et al. Robotic-assisted surgery for rectal adenocarcinoma: short-term and midterm outcomes from 200 consecutive cases at a single institution. Dis Colon Rectum. 2014;57:570–577.

Tang B, Zhang C, Li C, et al. Robotic total mesorectal excision for rectal cancer: a series of 392 cases and mid-term outcomes from a single center in China. J Gastrointest Surg. 2017;21:569–576.

Jayne D, Pigazzi A, Marshall H, et al. Effect of robotic-assisted vs conventional laparoscopic surgery on risk of conversion to open laparotomy among patients undergoing resection for rectal cancer: the ROLARR randomized clinical trial. JAMA. 2017;318:1569–1580.

Wright JD. Robotic-assisted surgery: balancing evidence and implementation. JAMA. 2017;318:1545–1547.

Colombo P-E, Bertrand MM, Alline M, et al. Robotic versus laparoscopic total mesorectal excision (TME) for sphincter-saving surgery: Is there any difference in the transanal TME rectal approach? A single-center series of 120 consecutive patients. Ann Surg Oncol. 2016;23:1594–1600.

Bertrand MM, Colombo P-E, Mourregot A, et al. Standardized single docking, four arms and fully robotic proctectomy for rectal cancer: the key points are the ports and arms placement. J Robot Surg. 2016;10:171–174.

Rouanet P, Mourregot A, Azar CC, et al. Transanal endoscopic proctectomy: an innovative procedure for difficult resection of rectal tumors in men with narrow pelvis. Dis Colon Rectum. 2013;56:408–415.

Fayers P, Aaronson N, Bjordal K, et al. Microsoft Word—SCmanual.doc—SCManualQLQ-C30.pdf. European Organisation for Research and Treatment of Cancer. http://www.eortc.be/qol/files/SCManualQLQ-C30.pdf.2001 . Accessed 8 Mar 2018.

Kwak JM, Kim SH, Kim J, et al. Robotic vs laparoscopic resection of rectal cancer: short-term outcomes of a case-control study. Dis Colon Rectum. 2011;54:151–156.

Pigazzi A, Luca F, Patriti A, et al. Multicentric study on robotic tumor-specific mesorectal excision for the treatment of rectal cancer. Ann Surg Oncol. 2010;17:1614–1620.

Baek SJ, Kim CH, Cho MS, et al. Robotic surgery for rectal cancer can overcome difficulties associated with pelvic anatomy. Surg Endosc. 2015;29:1419–1424.

Cho MS, Baek SJ, Hur H, et al. Short and long-term outcomes of robotic versus laparoscopic total mesorectal excision for rectal cancer: a case-matched retrospective study. Medicine (Baltimore). 2015;94:e522.

Lin S, Jiang H-G, Chen Z-H, et al. Meta-analysis of robotic and laparoscopic surgery for treatment of rectal cancer. World J Gastroenterol. 2011;17:5214–5220.

Trastulli S, Farinella E, Cirocchi R, et al. Robotic resection compared with laparoscopic rectal resection for cancer: systematic review and meta-analysis of short-term outcome. Colorectal Dis. 2012;14:e134–156.

Memon S, Heriot AG, Murphy DG, et al. Robotic versus laparoscopic proctectomy for rectal cancer: a meta-analysis. Ann Surg Oncol. 2012;19:2095–2101.

Yang Y, Wang F, Zhang P, et al. Robot-assisted versus conventional laparoscopic surgery for colorectal disease, focusing on rectal cancer: a meta-analysis. Ann Surg Oncol. 2012;19:3727–3736.

González Fernández AM, Mascareñas González JF. Total laparoscopic mesorectal excision versus robot-assisted in the treatment of rectal cancer: a meta-analysis. Cirugia Espanola. 2012;90:348–354.

Ortiz-Oshiro E, Sánchez-Egido I, Moreno-Sierra J, et al. Robotic assistance may reduce conversion to open in rectal carcinoma laparoscopic surgery: systematic review and meta-analysis. Int J Med Robot Comput Assist Surg MRCAS. 2012;8:360–370.

Xiong B, Ma L, Zhang C, et al. Robotic versus laparoscopic total mesorectal excision for rectal cancer: a meta-analysis. J Surg Res. 2014;188:404–414.

Li X, Wang T, Yao L, et al. The safety and effectiveness of robot-assisted versus laparoscopic TME in patients with rectal cancer: a meta-analysis and systematic review. Medicine (Baltimore). 2017;96:e7585.

Jiménez-Rodríguez RM, Rubio-Dorado-Manzanares M, Díaz-Pavón JM, et al. Learning curve in robotic rectal cancer surgery: current state of affairs. Int J Colorectal Dis. 2016;31:1807–1815.

Kim HJ, Choi G-S, Park JS, et al. Multidimensional analysis of the learning curve for robotic total mesorectal excision for rectal cancer: lessons from a single surgeon’s experience. Dis Colon Rectum. 2014;57:1066–1074.

Jiménez-Rodríguez RM, Díaz-Pavón JM, de la Portilla de Juan F, et al. Learning curve for robotic-assisted laparoscopic rectal cancer surgery. Int J Colorectal Dis. 2013;28:815–821.

Green BL, Marshall HC, Collinson F, et al. Long-term follow-up of the Medical Research Council CLASICC trial of conventional versus laparoscopically assisted resection in colorectal cancer. Br J Surg. 2013;100:75–82.

Bonjer HJ, Deijen CL, Haglind E, et al. A randomized trial of laparoscopic versus open surgery for rectal cancer. N Engl J Med. 2015;373:194.

Jeong S-Y, Park JW, Nam BH, et al. Open versus laparoscopic surgery for mid-rectal or low-rectal cancer after neoadjuvant chemoradiotherapy (COREAN trial): survival outcomes of an open-label, non-inferiority, randomised controlled trial. Lancet Oncol. 2014;15:767–774.

Stevenson ARL, Solomon MJ, Lumley JW, et al. Effect of laparoscopic-assisted resection vs open resection on pathological outcomes in rectal cancer: the ALaCaRT randomized clinical trial. JAMA. 2015;314:1356–1363.

Fleshman J, Branda M, Sargent DJ, et al. Effect of laparoscopic-assisted resection vs open resection of stage II or III rectal cancer on pathologic outcomes: the ACOSOG Z6051 randomized clinical trial. JAMA. 2015;314:1346–1355.

Penna M, Hompes R, Arnold S, et al. Transanal total mesorectal excision: international registry results of the first 720 cases. Ann Surg. 2017;266:111–117.

Escal L, Nougaret S, Guiu B, et al. MRI-based score to predict surgical difficulty in patients with rectal cancer. Br J Surg. 2018;105:140–146.

Rouanet P, Gourgou S, Gogenur I, et al. Rectal Surgery Evaluation Trial (RESET): protocol for a parallel cohort trial of outcomes using surgical techniques for total mesorectal excision with low anterior resection in high-risk rectal cancer patients. Colorectal Dis. (submitted).