A New Model with an Anatomically Accurate Human Renal Collecting System for Training in Fluoroscopy-Guided Percutaneous Nephrolithotomy Access

被引:44
作者
Turney, Benjamin W. [1 ]
机构
[1] Univ Oxford, Dept Urol, Nuffield Dept Surg Sci, Oxford, England
关键词
CLINICAL-RESEARCH OFFICE; SUPINE;
D O I
10.1089/end.2013.0616
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
1002 ; 100201 ;
摘要
Background and Purpose: Obtaining renal access is one of the most important and complex steps in learning percutaneous nephrolithotomy (PCNL). Ideally, this skill should be practiced outside the operating room. There is a need for anatomically accurate and cheap models for simulated training. The objective was to develop a cost-effective, anatomically accurate, nonbiologic training model for simulated PCNL access under fluoroscopic guidance. Methods: Collecting systems from routine computed tomography urograms were extracted and reformatted using specialized software. These images were printed in a water-soluble plastic on a three-dimensional (3D) printer to create biomodels. These models were embedded in silicone and then the models were dissolved in water to leave a hollow collecting system within a silicone model. These PCNL models were filled with contrast medium and sealed. A layer of dense foam acted as a spacer to replicate the tissues between skin and kidney. Results: 3D printed models of human collecting systems are a useful adjunct in planning PCNL access. The PCNL access training model is relatively low cost and reproduces the anatomy of the renal collecting system faithfully. A range of models reflecting the variety and complexity of human collecting systems can be reproduced. The fluoroscopic triangulation process needed to target the calix of choice can be practiced successfully in this model. Conclusions: This silicone PCNL training model accurately replicates the anatomic architecture and orientation of the human renal collecting system. It provides a safe, clean, and effective model for training in accurate fluoroscopy-guided PCNL access.
引用
收藏
页码:360 / 363
页数:4
相关论文
共 13 条
[1]   SUPINE VS PRONE PERCUTANEOUS NEPHROLITHOTOMY: AN ANAESTHETIST'S VIEW [J].
Atkinson, Catherine J. ;
Turney, Benjamin W. ;
Noble, Jeremy G. ;
Reynard, John M. ;
Stoneham, Mark D. .
BJU INTERNATIONAL, 2011, 108 (03) :306-308
[2]   Characterizing Bone Tunnel Placement in Medial Ulnar Collateral Ligament Reconstruction Using Patient-Specific 3-Dimensional Computed Tomography Modeling [J].
Byram, Ian R. ;
Khanna, Krishn ;
Gardner, Thomas R. ;
Ahmad, Christopher S. .
AMERICAN JOURNAL OF SPORTS MEDICINE, 2013, 41 (04) :894-902
[3]   The Clinical Research Office of the Endourological Society Percutaneous Nephrolithotomy Global Study: Indications, Complications, and Outcomes in 5803 Patients [J].
de la Rosette, Jean ;
Assimos, Dean ;
Desai, Mahesh ;
Gutierrez, Jorge ;
Lingeman, James ;
Scarpa, Roberto ;
Tefekli, Ahmet .
JOURNAL OF ENDOUROLOGY, 2011, 25 (01) :11-17
[4]  
de la Rosette JJMCH, 2008, EUR UROL, V54, P994, DOI 10.1016/j.eururo.2008.03.052
[5]   Quantification of airflow into the maxillary sinuses before and after functional endoscopic sinus surgery [J].
Frank, Dennis O. ;
Zanation, Adam M. ;
Dhandha, Vishal H. ;
McKinney, Kibwei A. ;
Fleischman, Gitanjali M. ;
Ebert, Charles S. ;
Senior, Brent A. ;
Kimbell, Julia S. .
INTERNATIONAL FORUM OF ALLERGY & RHINOLOGY, 2013, 3 (10) :834-840
[6]   Training in percutaneous nephrolithotomy [J].
Mishra, Shashikant ;
Jagtap, Jitendra ;
Sabnis, Ravindra B. ;
Desai, Mahesh R. .
CURRENT OPINION IN UROLOGY, 2013, 23 (02) :147-151
[7]   Mobile augmented reality for computer-assisted percutaneous nephrolithotomy [J].
Mueller, Michael ;
Rassweiler, Marie-Claire ;
Klein, Jan ;
Seitel, Alexander ;
Gondan, Matthias ;
Baumhauer, Matthias ;
Teber, Dogu ;
Rassweiler, Jens J. ;
Meinzer, Hans-Peter ;
Maier-Hein, Lena .
INTERNATIONAL JOURNAL OF COMPUTER ASSISTED RADIOLOGY AND SURGERY, 2013, 8 (04) :663-675
[8]   Pelvicaliceal biomodeling as an aid to achieving optimal access in percutaneous nephrolithotripsy [J].
Radecka, E ;
Brehmer, M ;
Holmgren, K ;
Palm, G ;
Magnusson, P ;
Magnusson, A .
JOURNAL OF ENDOUROLOGY, 2006, 20 (02) :92-101
[9]   Collecting System Percutaneous Access Using Real-Time Tracking Sensors: First Pig Model In Vivo Experience [J].
Rodrigues, Pedro L. ;
Vilaca, Joao L. ;
Oliveira, Carlos ;
Cicione, Antonio ;
Rassweiler, Jens ;
Fonseca, Jaime ;
Rodrigues, Nuno F. ;
Correia-Pinto, Jorge ;
Lima, Estevao .
JOURNAL OF UROLOGY, 2013, 190 (05) :1932-1937
[10]   Update on Training Models in Endourology: A Qualitative Systematic Review of the Literature between January 1980 and April 2008 [J].
Schout, Barbara M. A. ;
Hendrikx, Ad J. M. ;
Scherpbier, Albert J. J. A. ;
Bemelmans, Bart L. H. .
EUROPEAN UROLOGY, 2008, 54 (06) :1247-1261