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制作髋臼骨折的三维打印模型用作教育工具。

Creating Three-dimensional Printed Models of Acetabular Fractures for Use as Educational Tools.

作者信息

Manganaro Matthew S, Morag Yoav, Weadock William J, Yablon Corrie M, Gaetke-Udager Kara, Stein Erica B

机构信息

From the Divisions of Abdominal Radiology (M.S.M., W.J.W., K.G.U., E.B.S.) and Musculoskeletal Radiology (M.S.M., Y.M., C.M.Y., K.G.U.), Department of Radiology, University of Michigan Health System, 1500 E Medical Center Dr, UH B1-D502, Ann Arbor, MI 48109.

出版信息

Radiographics. 2017 May-Jun;37(3):871-880. doi: 10.1148/rg.2017160129.

Abstract

Acetabular fractures are frequently encountered in some clinical practices, and the precise classification of these fractures greatly influences treatments and outcomes. The authors identified the need for an educational aid when teaching acetabular fracture classifications, given the complex spatial anatomy and the nonintuitive classification system that is commonly used. Three-dimensional ( 3D three-dimensional ) printing is an evolving technique that has applications as an educational aid, providing the student with a tangible object to interact with and learn from. In this article, the authors review their experience creating 3D three-dimensional printed models of the hip for educational purposes. Their goal was to create 3D three-dimensional printed models for use as educational aids when teaching acetabular fracture classifications. Complex cases involving a combination of fracture types, subtle nondisplaced fractures, and/or fractures with associated osteopenia or artifacts were excluded. The selected computed tomographic (CT) scans were loaded into a medical 3D three-dimensional volume-rendering program, and a 3D three-dimensional volumetric model was created. Standard Tessellation Language ( STL Standard Tessellation Language ) files were then exported to STL Standard Tessellation Language model-editing software and edited to retain only the involved hemipelvis. In some cases, the proximal femur and ipsilateral hemisacrum may be included to emphasize hip alignment or disruption of the force transfer. Displaced fracture fragments can be printed as separate segments or a single unit after the addition of struts. Printing was performed by using an additive manufacturing principle, with approximately 36-48 hours needed for printing, postprocessing, and drying. The cost to print a 1:1 scale model was approximately $100-$200, depending on the amount of plastic material used. These models can then be painted according to the two-column theory regarding acetabular fractures. RSNA, 2017.

摘要

髋臼骨折在一些临床实践中经常遇到,而这些骨折的精确分类对治疗和预后有很大影响。鉴于髋臼复杂的空间解剖结构以及常用的非直观分类系统,作者们发现在教授髋臼骨折分类时需要一种教学辅助工具。三维(3D)打印是一种不断发展的技术,可作为教学辅助工具,为学生提供一个可与之互动并从中学习的实体对象。在本文中,作者们回顾了他们为教育目的创建髋关节3D打印模型的经验。他们的目标是创建3D打印模型,用作教授髋臼骨折分类时的教学辅助工具。排除了涉及多种骨折类型组合、细微无移位骨折和/或伴有骨质减少或伪影的骨折等复杂病例。将选定的计算机断层扫描(CT)图像加载到医学3D容积渲染程序中,创建一个3D容积模型。然后将标准镶嵌语言(STL)文件导出到STL模型编辑软件中进行编辑,仅保留受累的半骨盆。在某些情况下,可包括近端股骨和同侧半骶骨,以强调髋关节对线或力传递的中断。移位的骨折碎片在添加支柱后可打印为单独的部分或单个单元。打印采用增材制造原理,打印、后处理和干燥大约需要36 - 48小时。打印一个1:1比例模型的成本约为100 - 200美元,具体取决于所用塑料材料的数量。然后可根据关于髋臼骨折的双柱理论对这些模型进行上色。RSNA,2017年。

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