Robot-assisted Partial Nephrectomy with the Newly Developed KangDuo Surgical Robot Versus the da Vinci Si Surgical System: A Double-center Prospective Randomized Controlled Noninferiority Trial.
暂无分享,去创建一个
Jie Dong | S. Xiong | Liqun Zhou | Jie Wang | Zheng Zhang | Xiaofei Dai | S. Fan | Cheng Shen | L. Cai | Guanghua Liu | Cui-jian Zhang | Zhong-Huai Zhang | Xuesong Li | Weifeng Xu | Yi Xie | Zhigang Ji | C. Meng | Kunlin Yang | Li-qun Zhou
[1] Kun-lin Yang,et al. Robot‐assisted pyeloplasty using a new robotic system, the KangDuo‐Surgical Robot‐01: a prospective, single‐centre, single‐arm clinical study , 2021, BJU international.
[2] Kun-lin Yang,et al. Comparison of KD‐SR‐01 robotic partial nephrectomy and 3D‐laparoscopic partial nephrectomy from an operative and ergonomic perspective: A prospective randomized controlled study in porcine models , 2020, The international journal of medical robotics + computer assisted surgery : MRCAS.
[3] B. Hadaschik,et al. Retroperitoneal Versus Transperitoneal Robotic Partial Nephrectomy: A Multicenter Matched-pair Analysis. , 2020, European urology focus.
[4] K. Rha,et al. Robotic surgical systems in urology: What is currently available? , 2021, Investigative and clinical urology.
[5] Shaihong Zhu,et al. CHINESE SURGICAL ROBOT MICRO HAND S: A CONSECUTIVE CASE SERIES IN GENERAL SURGERY. , 2020, International journal of surgery.
[6] N. Samalavicius,et al. Robotic surgery using Senhance® robotic platform: single center experience with first 100 cases , 2019, Journal of Robotic Surgery.
[7] C. Solórzano,et al. Robotic-assisted adrenalectomy using da Vinci Xi vs. Si: are there differences? , 2019, Journal of Robotic Surgery.
[8] Wei Zhao,et al. Animal experiment for 5G remote robotic surgery , 2019 .
[9] Ahmed M. Zihni,et al. Ergonomic analysis of laparoscopic and robotic surgical task performance at various experience levels , 2018, Surgical Endoscopy.
[10] Y. Choi,et al. Functional and oncological outcomes of open, laparoscopic and robot‐assisted partial nephrectomy: a multicentre comparative matched‐pair analyses with a median of 5 years’ follow‐up , 2018, BJU international.
[11] Y. Choi,et al. Retzius‐sparing robot‐assisted radical prostatectomy using the Revo‐i robotic surgical system: surgical technique and results of the first human trial , 2018, BJU international.
[12] P. Tamboli,et al. Local Tumor Bed Recurrence Following Partial Nephrectomy in Patients with Small Renal Masses , 2018, The Journal of urology.
[13] A. Hemal,et al. Does Advancing Technology Improve Outcomes? Comparison of the Da Vinci Standard/S/Si to the Xi Robotic Platforms During Robotic Nephroureterectomy. , 2017, Journal of endourology.
[14] Y. Choi,et al. Da Vinci Xi and Si platforms have equivalent perioperative outcomes during robot-assisted partial nephrectomy: preliminary experience , 2017, Journal of Robotic Surgery.
[15] Michael J Schwartz,et al. Positive Surgical Margins Increase Risk of Recurrence after Partial Nephrectomy for High Risk Renal Tumors. , 2016, The Journal of urology.
[16] J. Bisley,et al. Evaluating tactile feedback in robotic surgery for potential clinical application using an animal model , 2016, Surgical Endoscopy.
[17] K. Rha,et al. Robot-assisted Partial Nephrectomy with the REVO-I Robot Platform in Porcine Models. , 2016, European urology.
[18] Giorgio Bozzini,et al. Robot-Assisted Laparoscopic Partial Nephrectomy with the ALF-X Robot on Pig Models. , 2016, European urology.
[19] K. Pritchard-Jones,et al. Omission of doxorubicin from the treatment of stage II–III, intermediate-risk Wilms' tumour (SIOP WT 2001): an open-label, non-inferiority, randomised controlled trial , 2015, The Lancet.
[20] A. Jemal,et al. Global cancer statistics, 2012 , 2015, CA: a cancer journal for clinicians.
[21] M. Menon,et al. Robotic retroperitoneal partial nephrectomy: a step‐by‐step guide , 2014, BJU international.
[22] E. Messing,et al. Renal function after nephron-sparing surgery versus radical nephrectomy: results from EORTC randomized trial 30904. , 2014, European urology.
[23] J. Kaouk,et al. Robotic partial nephrectomy versus laparoscopic cryoablation for the small renal mass. , 2012, European urology.
[24] K. Bensalah,et al. Positive surgical margin appears to have negligible impact on survival of renal cell carcinomas treated by nephron-sparing surgery. , 2010, European urology.
[25] M. Carini,et al. Histopathologic analysis of peritumoral pseudocapsule and surgical margin status after tumor enucleation for renal cell carcinoma. , 2009, European urology.
[26] N. Demartines,et al. Classification of Surgical Complications: A New Proposal With Evaluation in a Cohort of 6336 Patients and Results of a Survey , 2004, Annals of Surgery.
[27] Jacques Marescaux,et al. Transatlantic robot-assisted telesurgery , 2001, Nature.
[28] Anna Fagotti,et al. The new robotic TELELAP ALF-X in gynecological surgery: single-center experience , 2015, Surgical Endoscopy.
[29] A. Cestari,et al. Robot-assisted, single-site, dismembered pyeloplasty for ureteropelvic junction obstruction with the new da Vinci platform: a stage 2a study. , 2015, European urology.
[30] Tang Xin-ra. Application of Newcombe-Wilson score method in non-inferiority clinical trials with full rates of success , 2015 .