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Urologiia ; (1): 10-14, 2018 Mar.
Article in Russian | MEDLINE | ID: mdl-29634127

ABSTRACT

AIM: To develop a non-biological 3D printed simulator for training and preoperative planning in percutaneous nephrolithotripsy (PCNL), which allows doctors to master and perform all stages of the operation under ultrasound and fluoroscopy guidance. MATERIALS AND METHODS: The 3D model was constructed using multislice spiral computed tomography (MSCT) images of a patient with staghorn urolithiasis. The MSCT data were processed and used to print the model. The simulator consisted of two parts: a non-biological 3D printed soft model of a kidney with reproduced intra-renal vascular and collecting systems and a printed 3D model of a human body. Using this 3D printed simulator, PCNL was performed in the interventional radiology operating room under ultrasound and fluoroscopy guidance. RESULTS: The designed 3D printed model of the kidney completely reproduces the individual features of the intra-renal structures of the particular patient. During the training, all the main stages of PCNL were performed successfully: the puncture, dilation of the nephrostomy tract, endoscopic examination, intra-renal lithotripsy. CONCLUSION: Our proprietary 3D-printed simulator is a promising development in the field of endourologic training and preoperative planning in the treatment of complicated forms of urolithiasis.


Subject(s)
Education, Medical, Continuing/methods , Lithotripsy/methods , Models, Anatomic , Nephrostomy, Percutaneous/methods , Printing, Three-Dimensional , Urolithiasis/surgery , Humans , Nephrostomy, Percutaneous/education
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