[1] Merseburger A S, Herrmann T R W, Shariat S F, et al. EAU guidelines on robotic and single-site surgery in urology[J]. Eur Urol, 2013, 64(2): 277-291.
[2] Gueli Alletti S, Vizzielli G, Lafuenti L, et al. Singleinstitution propensity-matched study to evaluate the psychological effect of minimally invasive interval debulking surgery versus standard laparotomic treatment: from body to mind and back[J]. J Minim Invasive Gynecol, 2018, 25(5): 816-822.
[3] Herron D M, Marohn M. A consensus document on robotic surgery[J]. Surg Endosc, 2008, 22(2) : 313-325.
[4] Trinh Q D, Sammon J, Sun M, et al. Perioperative outcomes of robot-assisted radical prostatectomy compared with open radical prostatectomy: results from the nationwide inpatient sample[J]. Eur Urol, 2012, 61(4): 679-685.
[5] Raman J D, Bensalah K, Bagrodia A, et al. Laboratory and clinical development of single keyhole umbilical nephrectomy[J]. Urology, 2007, 70(6): 1039-1042.
[6] Nelson R J, Chavali J S S, Yerram N, et al. Current status of robotic single-port surgery[J]. Urol Annals, 2017, 9(3): 217-222.
[7] Narita M, Kageyama S, Okegawa T, et al. Urological laparoendoscopic single-site and reduced port surgery: a nationwide survey in Japan[J]. Int J Urol, 2018, 25(3): 263-268.
[8] PU Q H, LYU Q J, SU H Y. Bibliometric analysis of scientific publications in transplantation journals from Mainland China, Japan, South Korea and Taiwan between 2006 and 2015[J]. BMJ Open, 2016, 6(8): e011623.
[9] Aria M, Cuccurullo C. Bibliometrix: an R-tool for comprehensive science mapping analysis[J]. J Informetr, 2017, 11(4): 959-975.
[10] Bornmann L, Daniel H D. The state of h index research. Is the h index the ideal way to measure research performance?[J]. EMBO Rep, 2009, 10(1): 2-6.
[11] Hirsch J E. An index to quantify an individual’s scientific research output[J]. Proc Natl Acad Sci U S A, 2005, 102(46): 16569-16572.
[12] Van Eck N J, Waltman L. Software survey: VOSviewer, a computer program for bibliometric mapping[J]. Scientometrics, 2010, 84(2): 523-538.
[13] Kaouk J H, Goel R K, Haber G P, et al. Robotic single-port transumbilical surgery in humans: initial report[J]. BJU Int, 2009, 103(3): 366-369.
[14] Autorino R, Kaouk J H, Stolzenburg J U, et al. Current status and future directions of robotic single-site surgery: a systematic review[J]. Eur Urol, 2013, 63(2): 266-280.
[15] Haber G P, Crouzet S, Kamoi K, et al. Robotic NOTES (Natural Orifice Translumenal Endoscopic Surgery) in reconstructive urology: initial laboratory experience[J]. Urology, 2008, 71(6): 996-1000.
[16] Shin T Y, Lim S K, Komninos C, et al. Laparoendoscopic single-site (LESS) robot-assisted partial nephrectomy (RAPN) reduces postoperative wound pain without a rise in complication rates[J]. BJU Int, 2014, 114(4): 555-561.
[17] White M A, Autorino R, Spana G, et al. Robotic laparoendoscopic single-site radical nephrectomy: surgical technique and comparative outcomes[J]. Eur Urol, 2011, 59(5): 815-822.
[18] White M A, Haber G P, Autorino R, et al. Robotic laparoendoscopic single-site radical prostatectomy: technique and early outcomes[J]. Eur Urol, 2010, 58(4): 544-550.
[19] Konstantinidis K M, Hirides P, Hirides S, et al. Cholecystectomy using a novel Single-Site(®) robotic platform: early experience from 45 consecutive cases [J]. Surg Endosc, 2012, 26(9): 2687-2694.
[20] SU W L, HUANG J W, WANG S N, et al. Comparison study of clinical outcomes between single-site robotic cholecystectomy and single incision laparoscopic cholecystectomy[J]. Asian journal of surgery, 2017, 40(6): 424-428.
[21] Law J, Rowe N, Archambault J, et al. First canadian experience with robotic single-incision pyeloplasty: comparison with multi-incision technique[J]. Can Urol Assoc J, 2016, 10(3-4): 83-88.
[22] Olweny E O, Park S K, Tan Y K, et al. Perioperative comparison of robotic assisted laparoendoscopic single-site (LESS) pyeloplasty versus conventional LESS pyeloplasty[J]. Eur Urol, 2012, 61(2): 410-414.
[23] Won Lee J, Arkoncel F R P, Rha K H, et al. Urologic robot-assisted laparoendoscopic single-site surgery using a homemade single-port device: a single-center experience of 68 cases[J]. Journal of endourology, 2011, 25(9): 1481-1485.
[24] Dobbs R W, Halgrimson W R, Talamini S, et al. Single-port robotic surgery: the next generation of minimally invasive urology[J]. World J Urol, 2020, 38(4): 897-905.
[25] Kaouk J, Aminsharifi A, Sawczyn G, et al. Single-port robotic urological surgery using purpose-built singleport surgical system: single-institutional experience with the first 100 cases[J]. Urology, 2020, 140: 77-83.
[26] Kaouk J, Garisto J, Bertolo R. Different approaches to the prostate: the upcoming role of a purpose-built single-port robotic system[J]. Arab J Urol, 2018, 16(3): 302-306.
[27] Kaouk J, Garisto J, Bertolo R. Robotic urologic surgical interventions performed with the single port dedicated platform: first clinical investigation[J]. Eur Urol, 2019, 75(4): 684-691.
[28] Kaouk J H, Autorino R, Laydner H, et al. Robotic single-site kidney surgery: evaluation of secondgeneration instruments in a cadaver model[J]. Urology, 2012, 79(5): 975-979.
[29] 杨波 , 王辉清 , 肖亮 , 等 . 机器人单孔腹腔镜下行 猪肾部分切除术及肾盂输尿管成形术的初步尝试 [J]. 第二军医大学学报 , 2011, 32(4): 409-412.
[30] 马鑫 , 张旭 , 董隽 , 等 . 机器人辅助经脐单孔腹腔 镜肾囊肿去顶减压术 3 例报告 [J]. 微创泌尿外科 杂志 , 2014, 3(1): 8-11.