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利用三维(3D)打印技术制作解剖教学资源。

The production of anatomical teaching resources using three-dimensional (3D) printing technology.

机构信息

Centre for Human Anatomy Education, Department of Anatomy and Developmental Biology, School of Biomedical Sciences, Faculty of Medicine, Nursing and Health Sciences, Monash University, Clayton, Victoria, Australia.

出版信息

Anat Sci Educ. 2014 Nov-Dec;7(6):479-86. doi: 10.1002/ase.1475. Epub 2014 Jun 27.

Abstract

The teaching of anatomy has consistently been the subject of societal controversy, especially in the context of employing cadaveric materials in professional medical and allied health professional training. The reduction in dissection-based teaching in medical and allied health professional training programs has been in part due to the financial considerations involved in maintaining bequest programs, accessing human cadavers and concerns with health and safety considerations for students and staff exposed to formalin-containing embalming fluids. This report details how additive manufacturing or three-dimensional (3D) printing allows the creation of reproductions of prosected human cadaver and other anatomical specimens that obviates many of the above issues. These 3D prints are high resolution, accurate color reproductions of prosections based on data acquired by surface scanning or CT imaging. The application of 3D printing to produce models of negative spaces, contrast CT radiographic data using segmentation software is illustrated. The accuracy of printed specimens is compared with original specimens. This alternative approach to producing anatomically accurate reproductions offers many advantages over plastination as it allows rapid production of multiple copies of any dissected specimen, at any size scale and should be suitable for any teaching facility in any country, thereby avoiding some of the cultural and ethical issues associated with cadaver specimens either in an embalmed or plastinated form.

摘要

解剖学教学一直是社会争议的主题,特别是在使用尸体材料进行专业医学和辅助健康专业培训方面。在医学和辅助健康专业培训计划中,基于解剖的教学减少的部分原因是维护遗赠计划、获取人体尸体以及学生和工作人员接触含有甲醛的防腐液的健康和安全考虑所涉及的财务考虑。本报告详细介绍了增材制造或三维(3D)打印如何创建已解剖人体和其他解剖标本的复制品,从而避免了上述许多问题。这些 3D 打印品是基于表面扫描或 CT 成像获取的数据进行解剖的高分辨率、准确颜色再现。使用分割软件对负空间、对比 CT 射线照相数据的 3D 打印应用进行了说明。打印标本的准确性与原始标本进行了比较。与塑化相比,这种生产解剖学上准确复制品的替代方法具有许多优势,因为它允许快速生产任何解剖标本的多个副本,并且可以在任何尺寸范围内进行,并且应该适合任何国家的任何教学设施,从而避免了与尸体标本相关的一些文化和伦理问题,无论是在防腐还是塑化形式。

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