Collecting system percutaneous access using real-time tracking sensors: first pig model in vivo experience.
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Estevão Lima | Jens Rassweiler | Jaime Fonseca | Jorge Correia-Pinto | Pedro L Rodrigues | João L Vilaça | Antonio Cicione | J. Rassweiler | N. Rodrigues | J. Vilaça | J. Correia-Pinto | Nuno F Rodrigues | A. Cicione | E. Lima | Carlos Oliveira | J. Fonseca | P. Rodrigues | Carlos Oliveira | Carlos A Oliveira
[1] Douglas P. Perrin,et al. Image guided surgical interventions. , 2009, Current problems in surgery.
[2] R. Autorino,et al. Modified supine versus prone position in percutaneous nephrolithotomy for renal stones treatable with a single percutaneous access: a prospective randomized trial. , 2008, European urology.
[3] M. Bader,et al. The "all-seeing needle": initial results of an optical puncture system confirming access in percutaneous nephrolithotomy. , 2011, European urology.
[4] J. Hoe,et al. Re-evaluation of indications for percutaneous nephrostomy and interventional uroradiological procedures in pelvic malignancy. , 1993, British journal of urology.
[5] M. Karadağ,et al. Does previous extracorporeal shock wave lithotripsy affect the performance and outcome of percutaneous nephrolithotomy? , 2009, The Journal of urology.
[6] Marc S. Schwartzberg,et al. Quality improvement guidelines for percutaneous nephrostomy. , 2001, Journal of vascular and interventional radiology : JVIR.
[7] John Lazarus,et al. The Locator: novel percutaneous nephrolithotomy apparatus to aid collecting system puncture--a preliminary report. , 2011, Journal of endourology.
[8] Ali Serdar Gözen,et al. Augmented reality: a new tool to improve surgical accuracy during laparoscopic partial nephrectomy? Preliminary in vitro and in vivo results. , 2009, European urology.
[9] Dan Stoianovici,et al. Urologic robots and future directions , 2009, Current opinion in urology.
[10] Mathew D. Sorensen,et al. Renal calyceal anatomy characterization with 3-dimensional in vivo computerized tomography imaging. , 2013, The Journal of urology.
[11] D. Tolley,et al. Flexible upper tract endoscopy , 2004, BJU international.
[12] J. Lingeman,et al. Chapter 1: AUA guideline on management of staghorn calculi: diagnosis and treatment recommendations. , 2005, The Journal of urology.
[13] Hans-Peter Meinzer,et al. Navigated renal access using electromagnetic tracking: an initial experience , 2010, Surgical Endoscopy.
[14] S. Guven,et al. Successful percutaneous nephrolithotomy in children: multicenter study on current status of its use, efficacy and complications using Clavien classification. , 2011, The Journal of urology.
[15] J. J. de la Rosette,et al. Percutaneous nephrolithotomy and its legacy. , 2005, European urology.
[16] A. Häcker,et al. Laser-guided percutaneous kidney access with the Uro Dyna-CT: first experience of three-dimensional puncture planning with an ex vivo model , 2013, World Journal of Urology.
[17] F. Coe,et al. Clinical practice. Calcium kidney stones. , 2010, The New England journal of medicine.
[18] B. Song,et al. Stereotactic localisation system: a modified puncture technique for percutaneous nephrolithotomy , 2012, Urological Research.
[19] S. Tekgul,et al. Tubeless mini percutaneous nephrolithotomy in infants and preschool children: a preliminary report. , 2010, The Journal of urology.
[20] Pierre Conort,et al. Training in percutaneous nephrolithotomy--a critical review. , 2008, European urology.
[21] R. Mohammadi,et al. A study on comparative outcomes of percutaneous nephrolithotomy in prone, supine, and flank positions , 2013, World Journal of Urology.
[22] Arvind Ganpule,et al. Robotic flexible ureteroscopy for renal calculi: initial clinical experience. , 2011, The Journal of urology.
[23] Hans-Peter Meinzer,et al. Pitfalls of electromagnetic tracking in clinical routine using multiple or adjacent sensors , 2013, The international journal of medical robotics + computer assisted surgery : MRCAS.
[24] R. Autorino,et al. Prone or supine: is this the question? , 2008, European urology.
[25] N. Burgess,et al. Percutaneous nephrolithotomy in the United kingdom: results of a prospective data registry. , 2012, European urology.
[26] H. Meinzer,et al. iPad-assisted percutaneous access to the kidney using marker-based navigation: initial clinical experience. , 2012, European urology.
[27] K. Cleary,et al. Image-guided interventions: technology review and clinical applications. , 2010, Annual review of biomedical engineering.
[28] Michael N. Ferrandino,et al. Factors affecting patient radiation exposure during percutaneous nephrolithotomy. , 2010, The Journal of urology.
[29] Estevão Lima,et al. Kidney targeting and puncturing during percutaneous nephrolithotomy: recent advances and future perspectives. , 2013, Journal of endourology.
[30] Christina Kalogeropoulou,et al. Imaging in percutaneous nephrolithotomy. , 2009, Journal of endourology.
[31] R. Goel,et al. Stereotactic percutaneous cryoablation for renal tumors: initial clinical experience. , 2010, The Journal of urology.
[32] Z. Okeke,et al. The debate over percutaneous nephrolithotomy positioning: a comprehensive review. , 2011, The Journal of urology.
[33] Ziv Yaniv,et al. Electromagnetic tracking in the clinical environment. , 2009, Medical physics.
[34] Uday Patel,et al. Computed tomography for percutaneous renal access. , 2009, Journal of endourology.
[35] G. Preminger,et al. Tubeless percutaneous nephrolithotomy--the new standard of care? , 2010, The Journal of urology.