1 |
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[J]. Lancet, 2012, 379(9829): 1887-1892.
|
2 |
Zingg U, Mcquinn A, Divalentino D, et al. Minimally invasive versus open esophagectomy for patients with esophageal cancer[J]. Ann Thorac Surg, 2009, 87(3): 911-919.
|
3 |
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[J]. Ann Surg, 2017, 266(2): 232-236.
|
4 |
Mamidanna R, Bottle A, Aylin P, et al. Short-term outcomes following open versus minimally invasive esophagectomy for cancer in England: a population-based national study[J]. Ann Surg, 2012, 255(2): 197-203.
|
5 |
Sihvo E, Helminen O, Gunn J, et al. Long-term outcomes following minimally invasive and open esophagectomy in finland: a population-based study[J]. Eur J Surg Oncol, 2018, doi: 10.1016/j.ejso.2018.12.001.
|
6 |
Horgan S, Berger RA, Elli EF, et al. Robotic-assisted minimally invasive transhiatal esophagectomy[J]. Am Surg, 2003, 69(7): 624-626.
|
7 |
Kernstine KH, Dearmond DT, Karimi M, et al. The robotic, 2-stage, 3-field esophagolymphadenectomy[J]. J Thorac Cardiovasc Surg, 2004, 127(6): 1847-1849.
|
8 |
Galvani CA, Gorodner MV, Moser F, et al. Robotically assisted laparoscopic transhiatal esophagectomy[J]. Surg Endosc, 2008, 22(1): 188-195.
|
9 |
Coker AM, Barajas-Gamboa JS, Cheverie J, et al. Outcomes of robotic-assisted transhiatal esophagectomy for esophageal cancer after neoadjuvant chemoradiation[J]. J Laparoendosc Adv Surg Tech A, 2014, 24(2): 89-94.
|
10 |
Mori K, Yamagata Y, Aikou S, et al. Short-term outcomes of robotic radical esophagectomy for esophageal cancer by a nontransthoracic approach compared with conventional transthoracic surgery[J]. Dis Esophagus, 2016, 29(5): 429-434.
|
11 |
Dunn DH, Johnson E M, Anderson CA, et al. Operative and survival outcomes in a series of 100 consecutive cases of robot-assisted transhiatal esophagectomies[J]. Dis Esophagus, 2017, 30(10): 1-7.
|
12 |
Hodari A, Park KU, Lace B, et al. Robot-Assisted Minimally Invasive Ivor Lewis Esophagectomy With Real-Time Perfusion Assessment[J]. Ann Thorac Surg, 2015, 100(3): 947-952.
|
13 |
Wee JO, Bravo-Iniguez CE, Jaklitsch MT. Early Experience of Robot-Assisted Esophagectomy With Circular End-to-End Stapled Anastomosis[J]. Ann Thorac Surg, 2016, 102(1): 253-259.
|
14 |
Cerfolio RJ, Wei B, Hawn MT, et al. Robotic esophagectomy for cancer: early results and lessons learned[J]. Semin Thorac Cardiovasc Surg, 2016, 28(1): 160-169.
|
15 |
Meredith K, Huston J, Andacoglu O, et al. Safety and feasibility of robotic-assisted Ivor-Lewis esophagectomy[J]. Dis Esophagus, 2018, 31(7). doi: 10.1093/dote/doy005.
|
16 |
Zhang Y, Xiang J, Han Y, et al. Initial experience of robot-assisted Ivor-Lewis esophagectomy: 61 consecutive cases from a single Chinese institution[J]. Dis Esophagus, 2018, 31(12).doi: 10.1093/dote/doy048.
|
17 |
Wang WP, Chen LQ, Zhang HL, et al. Modified intrathoracic esophagogastrostomy with minimally invasive robot-assisted Ivor-lewis esophagectomy for cancer[J]. Dig Surg, 2018: 1-8.
|
18 |
Sarkaria IS, Rizk NP, Finley DJ, et al. Combined thoracoscopic and laparoscopic robotic-assisted minimally invasive esophagectomy using a four-arm platform: experience, technique and cautions during early procedure development[J]. Eur J Cardiothorac Surg, 2013, 43(5): e107-e115.
|
19 |
Park S, Hwang Y, Lee HJ, et al. Comparison of robot-assisted esophagectomy and thoracoscopic esophagectomy in esophageal squamous cell carcinoma[J]. J Thorac Dis, 2016, 8(10): 2853-2861.
|
20 |
Okusanya OT, Sarkaria IS, Hess NR, et al. Robotic assisted minimally invasive esophagectomy (RAMIE): the University of Pittsburgh Medical Center initial experience[J]. Ann Cardiothorac Surg, 2017, 6(2): 179-185.
|
21 |
Guerra F, Vegni A, Gia E, et al. Early experience with totally robotic esophagectomy for malignancy. Surgical and oncological outcomes[J]. Int J Med Robot, 2018, 14(3): e1902.
|
22 |
Kernstine KH, Dearmond DT, Shamoun DM, et al. The first series of completely robotic esophagectomies with three-field lymphadenectomy: initial experience[J]. Surg Endosc, 2007, 21(12): 2285-2292.
|
23 |
Boone J, Schipper ME, Moojen WA, et al. Robot-assisted thoracoscopic oesophagectomy for cancer[J]. Br J Surg, 2009, 96(8): 878-886.
|
24 |
Weksler B, Sharma P, Moudgill N, et al. Robot-assisted minimally invasive esophagectomy is equivalent to thoracoscopic minimally invasive esophagectomy[J]. Dis Esophagus, 2012, 25(5): 403-409.
|
25 |
van der Sluis PC, Ruurda JP, Verhage RJ, et al. Oncologic long-term results of robot-assisted minimally invasive thoraco-laparoscopic esophagectomy with two-field lymphadenectomy for esophageal cancer[J]. Ann Surg Oncol, 2015, 22(Suppl 3): S1350-S1356.
|
26 |
Puntambekar S, Kenawadekar R, Kumar S, et al. Robotic transthoracic esophagectomy[J]. BMC Surg, 2015, 15: 47.
|
27 |
易俊,熊磊,李德闽,等. 达芬奇机器人在食管癌外科治疗中的应用[J]. 中国胸心血管外科临床杂志,2015, 22(10): 910-913.
|
28 |
Park SY, Kim DJ, Yu WS, et al. Robot-assisted thoracoscopic esophagectomy with extensive mediastinal lymphadenectomy: experience with 114 consecutive patients with intrathoracic esophageal cancer[J]. Dis Esophagus, 2016, 29(4): 326-332.
|
29 |
谭子辉,张旭,王欣烨,等. 机器人辅助食管癌根治术近期疗效分析[J]. 中华胃肠外科杂志,2016, 19(9): 995-998.
|
30 |
Chiu PW, Teoh AY, Wong VW, et al. Robotic-assisted minimally invasive esophagectomy for treatment of esophageal carcinoma[J]. J Robot Surg, 2017, 11(2): 193-199.
|
31 |
Somashekhar SP, Jaka RC. Total (transthoracic and transabdominal) robotic radical three-stage esophagectomy-initial indian experience[J]. Indian J Surg, 2017, 79(5): 412-417.
|
32 |
Chao YK, Hsieh MJ, Liu YH, et al. Lymph node evaluation in robot-assisted versus video-assisted thoracoscopic esophagectomy for esophageal squamous cell carcinoma: a propensity-matched analysis[J]. World J Surg, 2018, 42(2): 590-598.
|
33 |
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]. J Cardiothorac Surg, 2018, 13(1): 52.
|
34 |
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[J]. Dis Esophagus, 2018.doi: 10.1093/dote/doy110.
|
35 |
Zhang X, Su Y, Yang Y, et al. Robot assisted esophagectomy for esophageal squamous cell carcinoma[J]. J Thorac Dis, 2018, 10(6): 3767-3775.
|
36 |
Orringer MB, Marshall B, Chang AC, et al. Two thousand transhiatal esophagectomies: changing trends, lessons learned[J]. Ann Surg, 2007, 246(3): 363-72; discussion 372-374.
|
37 |
Hulscher JB, Tijssen JG, Obertop H, et al. Transthoracic versus transhiatal resection for carcinoma of the esophagus: a meta-analysis[J]. Ann Thorac Surg, 2001, 72(1): 306-313.
|
38 |
Davies AR, Sandhu H, Pillai A, et al. Surgical resection strategy and the influence of radicality on outcomes in oesophageal cancer[J]. Br J Surg, 2014, 101(5): 511-517.
|
39 |
Hulscher JB, Van Sandick JW, De Boer AG, et al. Extended transthoracic resection compared with limited transhiatal resection for adenocarcinoma of the esophagus[J]. N Engl J Med, 2002, 347(21): 1662-1669.
|
40 |
Dunn DH, Johnson EM, Morphew JA, et al. Robot-assisted transhiatal esophagectomy: a 3-year single-center experience[J]. Dis Esophagus, 2013, 26(2): 159-166.
|
41 |
Ajani JA, D'amico TA, Almhanna K, et al. Esophageal and esophagogastric junction cancers, version 1.2015[J]. J Natl Compr Canc Netw, 2015, 13(2): 194-227.
|
42 |
Nakauchi M, Uyama I, Suda K, et al. Robot-assisted mediastinoscopic esophagectomy for esophageal cancer: the first clinical series[J]. Esophagus,2019,16(1):85-92.
|
43 |
Van Workum F, Slaman AE, Van Berge Henegouwen MI, et al. Propensity score-matched analysis comparing minimally invasive Ivor Lewis versus minimally invasive Mckeown esophagectomy[J]. Ann Surg, 2018.doi: 10.1097/SLA.0000000000002982.
|
44 |
Brown AM, Pucci MJ, Berger AC, et al. A standardized comparison of peri-operative complications after minimally invasive esophagectomy: Ivor Lewis versus McKeown[J]. Surg Endosc, 2018, 32(1): 204-211.
|
45 |
Van Workum F, Berkelmans GH, Klarenbeek BR, et al. McKeown or Ivor Lewis totally minimally invasive esophagectomy for cancer of the esophagus and gastroesophageal junction: systematic review and meta-analysis[J]. J Thorac Dis, 2017, 9(Suppl 8): S826-S833.
|
46 |
Luketich JD, Pennathur A, Awais O, et al. Outcomes after minimally invasive esophagectomy: review of over 1000 patients[J]. Ann Surg, 2012, 256(1): 95-103.
|
47 |
Van Workum F, Bouwense SA, Luyer MD, et al. Intrathoracic versus Cervical ANastomosis after minimally invasive esophagectomy for esophageal cancer: study protocol of the ICAN randomized controlled trial[J]. Trials, 2016, 17(1): 505.
|
48 |
韩丁培,项捷,高涛涛,等. 机器人辅助与传统Ivor-Lewis食管癌根治术近期疗效的比较[J]. 中国微创外科杂志,2016, 16(5): 404-407.
|
49 |
张亚杰,韩宇,项捷,等. 机器人微创Ivor Lewis食管癌根治术的应用[J]. 中国胸心血管外科临床杂志,2018, 25(9): 735-741.
|
50 |
Cerfolio RJ, Bryant AS, Hawn MT. Technical aspects and early results of robotic esophagectomy with chest anastomosis[J]. J Thorac Cardiovasc Surg, 2013, 145(1): 90-96.
|
51 |
Deng HY, Huang WX, Li G, et al. Comparison of short-term outcomes between robot-assisted minimally invasive esophagectomy and video-assisted minimally invasive esophagectomy in treating middle thoracic esophageal cancer[J]. Dis Esophagus, 2018, 31(8).doi: 10.1093/dote/doy012.
|
52 |
Palanivelu C, Prakash A, Senthilkumar R, et al. Minimally invasive esophagectomy: thoracoscopic mobilization of the esophagus and mediastinal lymphadenectomy in prone position--experience of 130 patients[J]. J Am Coll Surg, 2006, 203(1): 7-16.
|
53 |
Markar SR, Wiggins T, Antonowicz S, et al. Minimally invasive esophagectomy: Lateral decubitus vs. prone positioning; systematic review and pooled analysis[J]. Surg Oncol, 2015, 24(3): 212-219.
|
54 |
Sarkaria IS, Rizk NP. Robotic-assisted minimally invasive esophagectomy: the Ivor Lewis approach[J]. Thorac Surg Clin, 2014, 24(2): 211-22, vii.
|
55 |
De La Fuente SG, Weber J, Hoffe SE, et al. Initial experience from a large referral center with robotic-assisted Ivor Lewis esophagogastrectomy for oncologic purposes[J]. Surg Endosc, 2013, 27(9): 3339-3347.
|
56 |
Salem AI, Thau MR, Strom TJ, et al. Effect of body mass index on operative outcome after robotic-assisted Ivor-Lewis esophagectomy: retrospective analysis of 129 cases at a single high-volume tertiary care center[J]. Dis Esophagus, 2017, 30(1): 1-7.
|
57 |
Abbott A, Shridhar R, Hoffe S, et al. Robotic assisted Ivor Lewis esophagectomy in the elderly patient[J]. J Gastrointest Oncol, 2015, 6(1): 31-38.
|
58 |
Trugeda S, Fernandez-Diaz MJ, Rodriguez-Sanjuan JC, et al. Initial results of robot-assisted Ivor-Lewis oesophagectomy with intrathoracic hand-sewn anastomosis in the prone position[J]. Int J Med Robot, 2014, 10(4): 397-403.
|
59 |
Tachimori Y, Ozawa S, Numasaki H, et al. Efficacy of lymph node dissection by node zones according to tumor location for esophageal squamous cell carcinoma[J]. Esophagus, 2016, 13: 1-7.
|
60 |
Udagawa H, Ueno M, Shinohara H, et al. The importance of grouping of lymph node stations and rationale of three-field lymphoadenectomy for thoracic esophageal cancer[J]. J Surg Oncol, 2012, 106(6): 742-747.
|
61 |
Sato Y, Kosugi S, Aizawa N, et al. Risk factors and clinical outcomes of recurrent laryngeal nerve paralysis after esophagectomy for thoracic esophageal carcinoma[J]. World J Surg, 2016, 40(1): 129-136.
|
62 |
Kim DJ, Park SY, Lee S, et al. Feasibility of a robot-assisted thoracoscopic lymphadenectomy along the recurrent laryngeal nerves in radical esophagectomy for esophageal squamous carcinoma[J]. Surg Endosc, 2014, 28(6): 1866-1873.
|
63 |
Heald RJ, Husband EM, Ryall RD. The mesorectum in rectal cancer surgery—the clue to pelvic recurrence[J].Br J Surg, 1982, 69(10): 613-616.
|
64 |
傅俊惠,杜泽森,郑春鹏,等. 胸、腹腔镜食管全系膜切除在食管癌根治术中的临床应用[J]. 中国微创外科杂志,2012, 12(10): 884-887.
|
65 |
马昌云,吴芳,宋银峰,等. 探讨食管全系膜切除并三野淋巴结清扫在胸腹腔镜食管癌根治术中的应用[J]. 中国综合临床,2018, 34(4): 312-317.
|
66 |
Akiyama Y, Iwaya T, Endo F, et al. Thoracoscopic esophagectomy with total meso-esophageal excision reduces regional lymph node recurrence[J]. Langenbecks Arch Surg, 2018,403(8):967-975.
|
67 |
Kang M, Huang S, Lin J, et al. Video-assisted thoracoscopy the total mesoesophageal excision and systematic en bloc mediastinal lymph node dissection[J]. J Vis Surg, 2016, 2: 102.
|
68 |
Cuesta M A, Weijs T J, Bleys R L, et al. A new concept of the anatomy of the thoracic oesophagus: the meso-oesophagus. Observational study during thoracoscopic esophagectomy[J]. Surg Endosc, 2015, 29(9): 2576-2582.
|
69 |
Tachimori Y. Total mesoesophageal esophagectomy[J]. Chin Med J (Engl), 2014, 127(3): 574-579.
|
70 |
Schurink B, Defize I L, Mazza E, et al. Two-field lymphadenectomy during esophagectomy: the presence of thoracic duct lymph nodes[J]. Ann Thorac Surg, 2018, 106(2): 435-439.
|
71 |
Harushi U, Masaki U, Hisashi S, et al. Should lymph nodes along the thoracic duct be dissected routinely in radical esophagectomy[J].Esophagus, 2014, 11(3): 204-210.
|
72 |
Matsuda S, Takeuchi H, Kawakubo H, et al. Clinical outcome of transthoracic esophagectomy with thoracic duct resection: Number of dissected lymph node and distribution of lymph node metastasis around the thoracic duct[J]. Medicine (Baltimore), 2016, 95(24): e3839.
|
73 |
Anand S, Kalayarasan R, Chandrasekar S, et al. Minimally invasive esophagectomy with thoracic duct resection post neoadjuvant chemoradiotherapy for carcinoma esophagus-impact on lymph node yield and hemodynamic parameters[J]. J Gastrointest Cancer, 2018.doi: 10.1007/s12029-018-0051-1.
|