Robotic Lobectomy

Melfi F.M. Menconi G.F. Mariani A.M. et al.

Early experience with robotic technology for thoracoscopic surgery.

Eur J Cardiothorac Surg. 2002; 21: 864-868Veronesi G. Novellis P. Voulaz E. et al.

Robot-assisted surgery for lung cancer: state of the art and perspectives.

Lung Cancer. 2016; 101: 28-34

Robotic lobectomy and segmentectomy: technical details and results.

Surg Clin North Am. 2017; 97: 771-782Alicuben E.T. Wightman S.C. Shemanski K.A. et al.

Training residents in robotic thoracic surgery.

J Thorac Dis. 2021; 13: 6169-6178Park B.J. Melfi F. Mussi A. et al.

Robotic lobectomy for non-small cell lung cancer (NSCLC): long-term oncologic results.

J Thorac Cardiovasc Surg. 2012; 143: 383-389Yang H.X. Woo K.M. Sima C.S. et al.

Long-term survival based on the surgical approach to lobectomy for clinical stage I nonsmall cell lung cancer: comparison of robotic, video-assisted thoracic surgery, and thoracotomy lobectomy.

Ann Surg. 2017; 265: 431-437Yang C.F. Sun Z. Speicher P.J. et al.

Use and outcomes of minimally invasive lobectomy for stage I non-small cell lung cancer in the national cancer data base.

Ann Thorac Surg. 2016; 101: 1037-1042Aiolfi A. Nosotti M. Micheletto G. et al.

Pulmonary lobectomy for cancer: systematic review and network meta-analysis comparing open, video-assisted thoracic surgery, and robotic approach.

Surgery. 2021; 169: 436-446O'Sullivan K.E. Kreaden U.S. Hebert A.E. et al.

A systematic review and meta-analysis of robotic versus open and video-assisted thoracoscopic surgery approaches for lobectomy.

Interact Cardiovasc Thorac Surg. 2019; 28: 526-534Emmert A. Straube C. Buentzel J. et al.

Robotic versus thoracoscopic lung resection: a systematic review and meta-analysis.

Medicine (Baltimore). 2017; 96: e7633Burt B.M. Kosinski A.S. Shrager J.B. et al.

Thoracoscopic lobectomy is associated with acceptable morbidity and mortality in patients with predicted postoperative forced expiratory volume in 1 second or diffusing capacity for carbon monoxide less than 40% of normal.

J Thorac Cardiovasc Surg. 2014; 148 ([dicussion: 28-29.e1]): 19-28National Comprehensive Cancer Network

Non-small cell lung cancer (version 3.2022).

(Avaiable at:) (Accessed April 27, 2022)Park B.J. Flores R.M. Rusch V.W.

Robotic assistance for video-assisted thoracic surgical lobectomy: technique and initial results.

J Thorac Cardiovasc Surg. 2006; 131: 54-59Veronesi G. Galetta D. Maisonneuve P. et al.

Four-arm robotic lobectomy for the treatment of early-stage lung cancer.

J Thorac Cardiovasc Surg. 2010; 140: 19-25Cerfolio R.J. Bryant A.S. Minnich D.J.

Starting a robotic program in general thoracic surgery: why, how, and lessons learned.

Ann Thorac Surg. 2011; 91 ([discussion: 1736-7]): 1729-1736Dylewski M.R. Ohaeto A.C. Pereira J.F.

Pulmonary resection using a total endoscopic robotic video-assisted approach.

Semin Thorac Cardiovasc Surg. 2011; 23 (Spring): 36-42Gharagozloo F. Margolis M. Tempesta B. et al.

Robot-assisted lobectomy for early-stage lung cancer: report of 100 consecutive cases.

Ann Thorac Surg. 2009; 88: 380-384Jang H.J. Lee H.S. Park S.Y. et al.

Comparison of the early robot-assisted lobectomy experience to video-assisted thoracic surgery lobectomy for lung cancer: a single-institution case series matching study.

Innovations (Phila). 2011; 6: 305-310Anderson C.A. Hellan M. Falebella A. et al.

Robotic-assisted lung resection for malignant disease.

Innovations (Phila). 2007; 2: 254-258

Catastrophes and complicated intraoperative events during robotic lung resection.

J Vis Surg. 2017; 3: 52Cao C. Louie B.E. Melfi F. et al.

Outcomes of major complications after robotic anatomic pulmonary resection.

J Thorac Cardiovasc Surg. 2020; 159: 681-686Lacroix V. Kahn D. Matte P. et al.

Robotic-assisted lobectomy favors early lung recovery versus limited thoracotomy.

Thorac Cardiovasc Surg. 2021; 69: 557-563Deen S.A. Wilson J.L. Wilshire C.L. et al.

Defining the cost of care for lobectomy and segmentectomy: a comparison of open, video-assisted thoracoscopic, and robotic approaches.

Ann Thorac Surg. 2014; 97: 1000-1007Singer E. Kneuertz P.J. D'Souza D.M. et al.

Understanding the financial cost of robotic lobectomy: calculating the value of innovation?.

Ann Cardiothorac Surg. 2019; 8: 194-201Heiden B.T. Mitchell J.D. Rome E. et al.

Cost-effectiveness analysis of robotic-assisted lobectomy for non-small cell lung cancer.

Ann Thorac Surg. 2022; 114: 265-272Casiraghi M. Sedda G. Diotti C. et al.

Postoperative outcomes of robotic-assisted lobectomy in obese patients with non-small-cell lung cancer.

Interact Cardiovasc Thorac Surg. 2020; 30: 359-365Sesti J. Langan R.C. Bell J. et al.

A comparative analysis of long-term survival of robotic versus thoracoscopic lobectomy.

Ann Thorac Surg. 2020; 110: 1139-1146Liang H. Liang W. Zhao L. et al.

Robotic versus video-assisted lobectomy/segmentectomy for lung cancer: a meta-analysis.

Ann Surg. 2018; 268: 254-259Reddy R.M. Gorrepati M.L. Oh D.S. et al.

Robotic-assisted versus thoracoscopic lobectomy outcomes from high-volume thoracic surgeons.

Ann Thorac Surg. 2018; 106: 902-908

Surgical management of lung cancer: history, evolution, and modern advances.

Curr Oncol Rep. 2018; 20: 98Tchouta L.N. Park H.S. Boffa D.J. et al.

Hospital volume and outcomes of robot-assisted lobectomies.

Chest. 2017; 151: 329-339

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