索引超出了数组界限。
1 Gagner M, Pomp A. Laparoscopic pylorus-preserving pancreatoduodenectomy[J]. Surg Endosc, 1994, 8(5): 408-410.
2Wang M, Li D, Chen R, et al. Laparoscopic versus open pancreatoduodenectomy for pancreatic or periampullary tumours:a multicentre, open-label, randomised controlled trial[J]. Lancet Gastroenterol Hepatol, 2021, 6(6): 438-447.
3Sattari SA, Sattari AR, Makary MA, et al. Laparoscopic versus open pancreatoduodenectomy in patients with periampullary tumors: a systematic review and meta-analysis[J]. Ann Surg, 2023, 277(5): 742-755.
4Kim MS, Kim WJ, Hyung WJ, et al. Comprehensive learning curve of robotic surgery: discovery from a multicenter prospective trial of robotic gastrectomy[J]. Ann Surg, 2021, 273(5): 949-956.
5Crippa J, Grass F, Dozois EJ, et al. Robotic surgery for rectal cancer provides advantageous outcomes over laparoscopic approach:results from a large retrospective cohort[J]. Ann Surg, 2021, 274(6):e1218-e1222.
6Maganty A, Herrel LA, Hollenbeck BK. Robotic surgery for bladder cancer[J]. JAMA, 2022, 327(21): 2085-2087.
7van Mulken TJM, Schols RM, Scharmga AMJ, et al. First-in-human robotic supermicrosurgery using a dedicated microsurgical robot for treating breast cancer-related lymphedema: a randomized pilot trial[J]. Nat Commun, 2020, 11(1): 757.
8Giulianotti PC, Coratti A, Angelini M, et al. Robotics in general surgery: personal experience in a large community hospital[J]. Arch Surg, 2003, 138(7): 777-784.
9He R, Yin T, Pan S, et al. One hundred most cited article related to pancreaticoduodenectomy surgery: A bibliometric analysis[J]. Int J Surg, 2022, 104: 106775.
10 Hai H, Li Z, Zhang Z, et al. Duct-to-mucosa versus other types of pancreaticojejunostomy for the prevention of postoperative pancreatic fistula following pancreaticoduodenectomy[J]. Cochrane Database Syst Rev, 2022, 3(3): CD013462.
11 Fuks D. Minimally invasive pancreatoduodenectomy[J]. Br J Surg, 2020, 107(6): 630-631.
12 Rosemurgy AS, Ross SB, Espeut A, et al. Survival and robotic approach for pancreaticoduodenectomy: a propensity score-match study[J]. J Am Coll Surg, 2022, 234(4): 677-684.
13 Liu Q, Li M, Gao Y, et al. Effect of robotic versus open pancreaticoduodenectomy on postoperative length of hospital stay and complications for pancreatic head or periampullary tumours:a multicentre, open-label randomised controlled trial[J]. Lancet Gastroenterol Hepatol, 2024, 9(5): 428-437.
14 Liu Q, Zhao Z, Zhang X, et al. Robotic pancreaticoduodenectomy in elderly and younger patients: A retrospective cohort study[J]. Int J Surg, 2020, 81: 61-65.
15 Ouyang L, Zhang J, Feng Q, et al. Robotic versus laparoscopic pancreaticoduodenectomy: an up-to-date system review and meta-analysis[J]. Front Oncol, 2022, 12: 834382.
16 Zwart MJW, Nota CLM, de Rooij T, et al. Outcomes of a multicenter training program in robotic pancreatoduodenectomy (LAELAPS-3) [J]. Ann Surg, 2022, 276(6): e886-e895.
17 Zureikat AH, Postlewait LM, Liu Y, et al. A multi-institutional comparison of perioperative outcomes of robotic and open pancreaticoduodenectomy[J]. Ann Surg, 2016, 264(4): 640-649.
18 Yan Q, Xu LB, Ren ZF, et al. Robotic versus open pancreaticoduodenectomy: a meta-analysis of short-term outcomes[J]. Surg Endosc, 2020, 34(2): 501-509.
19 Marino MV, Podda M, Gomez Ruiz M, et al. Robotic-assisted versus open pancreaticoduodenectomy: the results of a case-matched comparison[J]. J Robot Surg, 2020, 14(3): 493-502.
20 Shi Y, Jin J, Qiu W, et al. Short-term outcomes after robot-assisted vs open pancreaticoduodenectomy after the learning curve[J]. JAMA Surg, 2020, 155(5): 389-394.
21 Klompmaker S, van Hilst J, Wellner UF, et al. Outcomes after minimally-invasive versus open pancreatoduodenectomy: a pan-European propensity score matched study[J]. Ann Surg, 2020, 271(2):356-363.
22 Kamarajah SK, Bundred J, Marc OS, et al. Robotic versus conventional laparoscopic pancreaticoduodenectomy a systematic review and meta-analysis[J]. Eur J Surg Oncol, 2020, 46(1): 6-14.
23 Baimas-George M, Watson M, Murphy KJ, et al. Robotic pancreaticoduodenectomy may offer improved oncologic outcomes over open surgery: a propensity-matched single-institution study[J]. Surg Endosc, 2020, 34(8): 3644-3649.
24 Nassour I, Tohme S, Hoehn R, et al. Safety and oncologic efficacy of robotic compared to open pancreaticoduodenectomy after neoadjuvant chemotherapy for pancreatic cancer[J]. Surg Endosc, 2021, 35(5): 2248-2254.
25 Mantzavinou A, Uppara M, Chan J, et al. Robotic versus open pancreaticoduodenectomy, comparing therapeutic indexes; a systematic review[J]. Int J Surg, 2022, 101: 106633.
26 Nassour I, Choti MA, Porembka MR, et al. Robotic-assisted versus laparoscopic pancreaticoduodenectomy: oncological outcomes[J]. Surg Endosc, 2018, 32(6): 2907-2913.
27 Liu Q, Zhao Z, Zhang X, et al. Perioperative and oncological outcomes of robotic versus open pancreaticoduodenectomy in low-risk surgical candidates: a multicenter propensity score-matched study[J]. Ann Surg, 2023, 277(4): e864-e871.
28 van Hilst J, de Rooij T, Bosscha K, et al. Laparoscopic versus open pancreatoduodenectomy for pancreatic or periampullary tumours (LEOPARD-2): a multicentre, patient-blinded, randomised controlled phase 2/3 trial[J]. Lancet Gastroenterol Hepatol, 2019, 4(3): 199-207.
29 Wang M, Peng B, Liu J, et al. Practice patterns and perioperative outcomes of laparoscopic pancreaticoduodenectomy in China: a retrospective multicenter analysis of 1029 patients[J]. Ann Surg, 2021, 273(1): 145-153.
30 Goh BK, Teo RY. Current status of laparoscopic and robotic pancreatic surgery and its adoption in Singapore[J]. Ann Acad Med Singap, 2020, 49(6): 377-383.
31 Zhou J, Xiong L, Miao X, et al. Outcome of robot-assisted pancreaticoduodenectomy during initial learning curve versus laparotomy[J]. Sci Rep, 2020, 10(1): 9621.
32 Kim HS, Kim H, Kwon W, et al. Perioperative and oncologic outcome of robot-assisted minimally invasive (hybrid laparoscopic and robotic) pancreatoduodenectomy: based on pancreatic fistula risk score and cancer/staging matched comparison with open pancreatoduodenectomy[J]. Surg Endosc, 2021, 35(4): 1675-1681.
33 Zhang T, Zhao ZM, Gao YX, et al. The learning curve for a surgeon in robot-assisted laparoscopic pancreaticoduodenectomy:a retrospective study in a high-volume pancreatic center[J]. Surg Endosc, 2019, 33(9): 2927-2933.
34 Zwart MJW, van den Broek B, de Graaf N, et al. The feasibility, proficiency, and mastery learning curves in 635 robotic pancreatoduodenectomies following a multicenter training program:"standing on the shoulders of giants"[J]. Ann Surg, 2023, 278(6):e1232-e1241.
35 Chan KS, Wang ZK, Syn N, et al. Learning curve of laparoscopic and robotic pancreas resections: a systematic review[J]. Surgery, 2021, 170(1): 194-206.
36 Shi Y, Wang W, Qiu W, et al. Learning curve from 450 cases of robot-assisted pancreaticoduocectomy in a high-volume pancreatic center:optimization of operative procedure and a retrospective study[J]. Ann Surg, 2021, 274(6): e1277-e1283.
37 Boone BA, Zenati M, Hogg ME, et al. Assessment of quality outcomes for robotic pancreaticoduodenectomy: identification of the learning curve[J]. JAMA Surg, 2015, 150(5): 416-422.
38 Rice MK, Hodges JC, Bellon J, et al. Association of mentorship and a formal robotic proficiency skills curriculum with subsequent generations' learning curve and safety for robotic pancreaticoduodenectomy[J]. JAMA Surg, 2020, 155(7): 607-615.