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首页> 外文期刊>Frontiers in Surgery >Using 3D Printing Technology to Teach Cartilage Framework Carving for Ear Reconstruction
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Using 3D Printing Technology to Teach Cartilage Framework Carving for Ear Reconstruction

机译:采用3D打印技术教授软骨框架雕刻耳重建

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Objective: The aim of this study was to determine the validity of using a carvable 3D printed rib model in combination with a 3D printed auricular framework to facilitate the teaching, training and planning of auricular reconstruction. Design: 3D printed costal cartilages from ribs 6–9 were produced using a FormLabs Form3 Printer and used to make negative molds. 2:1 silicone-cornstarch mixture was added to each mold to make 12 simulated 6–9th costal cartilages suitable for carving. 3D printed auricular frameworks were produced in polylactic acid using an Ultimaker 3 3D printer to demonstrate the component parts and constructed framework of an auricular reconstruction. Participants: Twelve plastic surgery trainees attended a workshop in which they each attempted auricular reconstruction using the carvable models and 3D printed plastic models as a guide. All candidates completed a pre- and post-training questionnaire to assess confidence and comprehension of auricular reconstruction, and the suitability of the models for facilitating this teaching. Results: Only 42% of trainees ( n = 5) had observed an ear reconstruction in theater prior to the training course. Statistically significant improvements in the appreciation of the different components that make an auricular framework ( p 0.0001) and confidence in carving and handling costal cartilage ( p 0.0001) were noted following completion of the training. Highly significant improvements in comprehension of the approach to ear reconstruction ( p = 0.006) and locating the subunits of a reconstructed ear from costal cartilage ( p = 0.003) were also noted. 100% of participants felt the 3D printed teaching aids directly enhanced their learning. Conclusions: Ear reconstruction is a complex, time consuming multi-stage operation demanding significant amounts of experience, planning and an appreciation of the 3D chondrocutaneous structure. In this study we have demonstrated the value of 3D printing in producing a suitable simulated costal cartilage model and as an adjunct to comprehending and planning a framework for auricular reconstruction.
机译:目的:本研究的目的是确定使用可腐败的3D印刷肋模型与3D印刷的耳廓框架相结合的有效性,以促进耳廓重建的教学,培训和规划。设计:3D使用Formlabs Form3打印机生产来自肋骨6-9的3D印刷肋骨软骨,并用于制造负模具。 2:1将硅胶玉米淀粉混合物加入到每种模具中,以制造12个模拟的6-9级肋骨软骨,适合雕刻。 3D使用Ultimaker 3 3D打印机在聚乳酸中产生印刷的耳廓框架,以展示组件和构造的耳廓重建构造框架。参与者:十二个整形外科学员参加了一个车间,其中每个车间都尝试使用可腐败的型号和3D印刷塑料模型作为导向器的刺耳重建。所有候选人完成了培训前和培训后的问卷,以评估对耳廓重建的信心和理解,以及模型促进这一教学的适用性。结果:只有42%的受训人员(n = 5)在培训课程之前观察到剧院的耳朵重建。在完成训练后注意到,在制造耳廓框架(P&LT; 0.0001)的不同部件的升高(P <0.0001)和雕刻和处理昂贵的软骨(P <0.0001)的统计学上的显着改进。还注意到,理解耳重建方法(P = 0.006)并从肋骨软骨中定位重建耳的亚基(P = 0.003)的高度显着改善。 100%的参与者认为3D印刷的教学助手直接增强了他们的学习。结论:耳重建是一种复杂,耗时的多阶段运作,要求大量经验,规划和3D软骨皮肤结构的升值。在这项研究中,我们已经证明了3D印刷的价值在制作合适的模拟昂贵软骨模型中,作为理解和规划耳廓重建框架的辅助。

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