Roboterassistierte Chirurgie in der Kopf-Hals-Region
暂无分享,去创建一个
[1] L. Crevier-Buchman,et al. Transoral robotic cordectomy for glottic carcinoma: a rapid review , 2022, European Archives of Oto-Rhino-Laryngology.
[2] T. Hoffmann. [The ORATOR trials-an update : Primary surgery or radiotherapy for HPV-associated oropharyngeal cancer]. , 2022, HNO.
[3] M. Paciotti,et al. Robot-assisted Radical Prostatectomy with the Novel Hugo Robotic System: Initial Experience and Optimal Surgical Set-up at a Tertiary Referral Robotic Center. , 2022, European urology.
[4] A. Fagotti,et al. The first European gynaecological procedure with the new surgical robot Hugo™ RAS. A total hysterectomy and salpingo-oophorectomy in a woman affected by BRCA-1 mutation , 2022, Facts, views & vision in ObGyn.
[5] K. Fung,et al. Randomized Trial of Radiotherapy Versus Transoral Robotic Surgery for Oropharyngeal Squamous Cell Carcinoma: Long-Term Results of the ORATOR Trial , 2022, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[6] F. Doglietto,et al. Hybrid Robotics for Endoscopic Transnasal Skull Base Surgery: Single-Centre Case Series , 2021, Operative neurosurgery.
[7] G. Lawson,et al. Single‐port transoral robotic surgery hypopharyngectomy , 2021, Head & neck.
[8] P. Schuler,et al. Current Advances in Robotics for Head and Neck Surgery—A Systematic Review , 2021, Cancers.
[9] A. Michael,et al. Robotic Skull Base Surgery. , 2020, Otolaryngologic clinics of North America.
[10] D. Kundrat,et al. Preclinical Performance Evaluation of a Robotic Endoscope for Non-Contact Laser Surgery , 2020, Annals of Biomedical Engineering.
[11] L. Dürselen,et al. Adding Flexible Instrumentation to a Curved Videolaryngoscope: A Novel Tool for Laryngeal Surgery , 2020, The Laryngoscope.
[12] J. Faulkner,et al. Combined robotic transorbital and transnasal approach to the nasopharynx and anterior skull base: Feasibility study , 2020, Clinical otolaryngology : official journal of ENT-UK ; official journal of Netherlands Society for Oto-Rhino-Laryngology & Cervico-Facial Surgery.
[13] Mamoru Mitsuishi,et al. SmartArm: Integration and validation of a versatile surgical robotic system for constrained workspaces , 2020, The international journal of medical robotics + computer assisted surgery : MRCAS.
[14] T. Hoffmann. [ORATOR study : Surgery or radiotherapy for oropharyngeal carcinoma in the context of HPV?] , 2020, HNO.
[15] P. Schuler,et al. Die Laryngektomie – noch zeitgemäß? , 2019, HNO.
[16] A. Knopf,et al. Die Laryngektomie – noch zeitgemäß? , 2019, HNO.
[17] G. Weinstein,et al. A Next-Generation Single-Port Robotic Surgical System for Transoral Robotic Surgery: Results From Prospective Nonrandomized Clinical Trials. , 2019, JAMA otolaryngology-- head & neck surgery.
[18] G. Weinstein,et al. A novel transpalatal‐transoral robotic surgery approach to clival chordomas extending into the nasopharynx , 2019, Head & neck.
[19] M. Nakayama,et al. Transoral supraglottic laryngectomy using a next‐generation single‐port robotic surgical system , 2019, Head & neck.
[20] Hongliang Ren,et al. A Compliant Transoral Surgical Robotic System Based on a Parallel Flexible Mechanism , 2019, Annals of Biomedical Engineering.
[21] M. Remacle,et al. Transoral Robotic Surgery Total Laryngectomy , 2018, ORL.
[22] S. Hans,et al. Oncologic outcomes with transoral robotic surgery for supraglottic squamous cell carcinoma: Results of the French Robotic Surgery Group of GETTEC , 2018, Head & neck.
[23] K. Sandu,et al. Transoral robotic‐assisted supracricoid partial laryngectomy with cricohyoidoepiglottopexy: Procedure development and outcomes of initial cases , 2018, Head & neck.
[24] J. Burgner-Kahrs,et al. Teleoperated tubular continuum robots for transoral surgery – feasibility in a porcine larynx model , 2018, The international journal of medical robotics + computer assisted surgery : MRCAS.
[25] Brett A Miles,et al. AHNS Series: Do you know your guidelines? Review of current knowledge on laryngeal cancer , 2018, Head & neck.
[26] S. Hans,et al. Transoral robotic surgery for sellar tumors: first clinical study. , 2017, Journal of neurosurgery.
[27] P. Schuler,et al. An Innovate Robotic Endoscope Guidance System for Transnasal Sinus and Skull Base Surgery: Proof of Concept , 2017, Journal of Neurological Surgery Part B: Skull Base.
[28] P. Schuler,et al. Recent advances in robot‐assisted head and neck surgery , 2017, The international journal of medical robotics + computer assisted surgery : MRCAS.
[29] Daniel T Friedrich,et al. Hybrid procedure for total laryngectomy with a flexible robot‐assisted surgical system , 2017, The international journal of medical robotics + computer assisted surgery : MRCAS.
[30] Tetsuya Goto,et al. Endoscopic endonasal transsphenoidal surgery using the iArmS operation support robot: initial experience in 43 patients. , 2017, Neurosurgical focus.
[31] R. Jiang,et al. Transoral robotic surgery for early glottic carcinoma involving anterior commissure: Preliminary reports , 2016, Head & neck.
[32] Daniel T Friedrich,et al. First use of a computer‐assisted operator‐controlled flexible endoscope for transoral surgery , 2015, The Laryngoscope.
[33] N. Rotter,et al. A single-port operator-controlled flexible endoscope system for endoscopic skull base surgery , 2015, HNO.
[34] R. Webster,et al. Resection of Pituitary Lesions in a Phantom Model using Concentric Tube Robots with Endoscopic Visualization , 2015 .
[35] R. Webster,et al. Endonasal Skull Base Tumor Removal Using Concentric Tube Continuum Robots: A Phantom Study , 2014, Journal of Neurological Surgery—Part B.
[36] E. Choi,et al. Comparison of oncologic and functional outcomes after transoral robotic lateral oropharyngectomy versus conventional surgery for T1 to T3 tonsillar cancer , 2014, Head & neck.
[37] G. Weinstein,et al. Transoral robotic surgery: radical tonsillectomy. , 2007, Archives of otolaryngology--head & neck surgery.
[38] G. Weinstein,et al. Transoral Robotic Surgery (TORS) for Base of Tongue Neoplasms , 2006, The Laryngoscope.