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经皮肾镜碎石取石术培训用三维打印非生物模拟器。

Three-dimensionally printed non-biological simulator for percutaneous nephrolithotomy training.

机构信息

Institute for Urology and Reproductive Health, Sechenov University, Moscow, Russia.

Department of Urology, University of California, Irvine, Irvine, CA, USA.

出版信息

Scand J Urol. 2020 Aug;54(4):349-354. doi: 10.1080/21681805.2020.1773529. Epub 2020 Jun 4.

Abstract

We sought to improve the educational and pre-operative training on various stages of percutaneous nephrolithotomy (PCNL) under fluoroscopic and ultrasound guidance. We developed a three-dimensional (3D) printed simulator (3D-printed PCNL model) for urological trainees. 40 s year urology residents were randomly assigned into two groups, completing PCNL surgical steps on a URO Mentor™ surgical simulator (Group A) or on our new 3D-printed PCNL model (Group B). Following the training, both groups completed a standardized questionnaire (Likert scale from 0 to 10) which we used to asses the learning curve associated with PCNL training. The mean score of Group A was 65.2/80 while Group B was 76.1/80. Mann-Whitney U-test showed no significant difference between the groups ( = 16,  < 0.05). The 3D-printed PCNL model developed is a novel and highly effective tool that can facilitate enhanced endourological education and personalized pre-operative planning for urolithiasis cases. According to the criteria tested, residents who used our 3D-printed PCNL models performed better under all metrics.

摘要

我们试图改进在透视和超声引导下经皮肾镜碎石术 (PCNL) 各个阶段的教育和术前培训。我们为泌尿科学员开发了一种用于 PCNL 手术步骤的三维 (3D) 打印模拟器 (3D 打印 PCNL 模型)。40 岁的泌尿科住院医师被随机分配到两组,一组在 URO Mentor™手术模拟器上完成 PCNL 手术步骤(A 组),另一组在我们新的 3D 打印 PCNL 模型上完成(B 组)。培训后,两组都完成了一份标准化问卷(0 到 10 分的李克特量表),我们用它来评估与 PCNL 培训相关的学习曲线。A 组的平均得分为 65.2/80,B 组为 76.1/80。曼-惠特尼 U 检验显示两组之间没有显著差异(U=16,p<0.05)。开发的 3D 打印 PCNL 模型是一种新颖且高效的工具,可以促进内镜教育的发展和结石病例的个性化术前规划。根据测试的标准,使用我们的 3D 打印 PCNL 模型的住院医师在所有指标下表现都更好。

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