Abstract Purpose Training in retrograde intrarenal surgery for the treatment of renal stone disease is a challenging task due to the unique complexity of the procedure. This study introduces a series of 3D printed models of upper urinary tract and stones designed to improve the training process. Methods Six different models of upper urinary tract were algorithmically isolated, digitally optimized and 3D printed from real-life cases. Soft and hard stones in different sizes were produced from 3D printed moulds. The models were fitted onto a commercially available part-task trainer and tested for retrograde intrarenal surgery. Results Each step of the procedure was simulated with extraordinary resemblance to real-life cases. The unique anatomi...
Background/aim It is necessary to incorporate novel training modalities in medical education, especi...
Objective: To investigate the impact of three-dimensional (3D) printed pelvicaliceal system models o...
PURPOSE: Three-dimensional (3D) printing was invented in 1983 but has only just begun to influence m...
Purpose Training in retrograde intrarenal surgery for the treatment of renal stone disease is a chal...
Purpose: Surgical simulation and 3D printing have both been gaining traction exclusively over the pa...
The management of nephrolithiasis has been complemented well by modern technological advancements li...
CTU data from clinical urolithiasis cases was processed via the software of CreEndo<sup>®</sup> , an...
© 2019 Logos Medical Publishing. All Rights Reserved.Objective: Using surgical education simulations...
ABSTRACT Background: Three-dimensional (3D) printing has been introduced as a novel technique to pr...
Background: Three-dimensional (3D) printing in medicine is a rapidly growing field of research. Thi...
Organ models are used for planning and simulation of operations, developing new surgical instruments...
To investigate the impact of three-dimensional (3D) printing on the surgical planning, potential of ...
INTRODUCTION: Aiming at promoting and facilitating learning and training in percutaneous renal surge...
This chapter presents a research which aims to increase accessibility and availability of surgical t...
This chapter presents research which aims to increase accessibility and availability of surgical tra...
Background/aim It is necessary to incorporate novel training modalities in medical education, especi...
Objective: To investigate the impact of three-dimensional (3D) printed pelvicaliceal system models o...
PURPOSE: Three-dimensional (3D) printing was invented in 1983 but has only just begun to influence m...
Purpose Training in retrograde intrarenal surgery for the treatment of renal stone disease is a chal...
Purpose: Surgical simulation and 3D printing have both been gaining traction exclusively over the pa...
The management of nephrolithiasis has been complemented well by modern technological advancements li...
CTU data from clinical urolithiasis cases was processed via the software of CreEndo<sup>®</sup> , an...
© 2019 Logos Medical Publishing. All Rights Reserved.Objective: Using surgical education simulations...
ABSTRACT Background: Three-dimensional (3D) printing has been introduced as a novel technique to pr...
Background: Three-dimensional (3D) printing in medicine is a rapidly growing field of research. Thi...
Organ models are used for planning and simulation of operations, developing new surgical instruments...
To investigate the impact of three-dimensional (3D) printing on the surgical planning, potential of ...
INTRODUCTION: Aiming at promoting and facilitating learning and training in percutaneous renal surge...
This chapter presents a research which aims to increase accessibility and availability of surgical t...
This chapter presents research which aims to increase accessibility and availability of surgical tra...
Background/aim It is necessary to incorporate novel training modalities in medical education, especi...
Objective: To investigate the impact of three-dimensional (3D) printed pelvicaliceal system models o...
PURPOSE: Three-dimensional (3D) printing was invented in 1983 but has only just begun to influence m...