Use of a 3D printed, color-coded airway model for bronchoscopy training and anatomy learning

Christopher T Leba, S. Vydro, Scott Drapeau, D. Romero, D. Harmon, M. Norris, Alyssa Perez, Michael J. Bunker, Shafkat Anwar, J. Sewell
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引用次数: 0

Abstract

Aim: Tracheobronchial anatomy for bronchoscopy education is challenging. 3D printing (3DP) is a promising technology to design bronchoscopy simulators. Materials & m ethods: We created a 3DP tracheobronchial model and color-coded the airways to train first-year pulmonary fellows. A pre- and post-test, practical test and post-test questionnaires were used to evaluate the curriculum implementation. Results: For six fellows the pre- and post-test mean score improved from 11.5/22 (SD = ±1.71) to 16.2/22 (SD = ±2.79). Practical testing mean was 34.5/54 (SD = ±5.82). Questionnaires rated the 3DP model favorably. Conclusion: Our pilot curriculum using a color-coded 3DP model demonstrated improvement in airway identification with favorable ratings by fellows. We posit conceptual frameworks in play and how we address them in future models.
使用3D打印的彩色气道模型进行支气管镜检查训练和解剖学习
目的:气管支气管解剖学对支气管镜教育具有挑战性。3D打印技术是一种很有前途的支气管镜模拟器设计技术。材料和方法:我们创建了一个3d气管支气管模型,并对气道进行了颜色编码,以培训一年级肺部研究员。采用前测和后测、实测和后测问卷对课程实施情况进行评价。结果:6名患者测试前和测试后的平均得分从11.5/22 (SD =±1.71)提高到16.2/22 (SD =±2.79)。实际检测平均值为34.5/54 (SD =±5.82)。问卷对3d打印模型的评价是有利的。结论:我们的试点课程使用彩色编码的3d打印模型,证明了气道识别的改善,并得到了同伴的好评。我们假设概念框架在发挥作用,以及我们如何在未来的模型中解决它们。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.70
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