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双挤出 3D 打印用于教育的解剖模型。

Dual-extrusion 3D printing of anatomical models for education.

机构信息

Anatomy Unit, Biomedical Section, School of Medicine, University College Dublin, Dublin, Ireland.

出版信息

Anat Sci Educ. 2018 Jan;11(1):65-72. doi: 10.1002/ase.1730. Epub 2017 Sep 14.

Abstract

Two material 3D printing is becoming increasingly popular, inexpensive and accessible. In this paper, freely available printable files and dual extrusion fused deposition modelling were combined to create a number of functional anatomical models. To represent muscle and bone FilaFlex flexible filament and polylactic acid (PLA) filament were extruded respectively via a single 0.4 mm nozzle using a Big Builder printer. For each filament, cubes (5 mm ) were printed and analyzed for X, Y, and Z accuracy. The PLA printed cubes resulted in errors averaging just 1.2% across all directions but for FilaFlex printed cubes the errors were statistically significantly greater (average of 3.2%). As an exemplar, a focus was placed on the muscles, bones and cartilage of upper airway and neck. The resulting single prints combined flexible and hard structures. A single print model of the vocal cords was constructed which permitted movement of the arytenoids on the cricoid cartilage and served to illustrate the action of intrinsic laryngeal muscles. As University libraries become increasingly engaged in offering inexpensive 3D printing services it may soon become common place for both student and educator to access websites, download free models or 3D body parts and only pay the costs of print consumables. Novel models can be manufactured as dissectible, functional multi-layered units and offer rich possibilities for sectional and/or reduced anatomy. This approach can liberate the anatomist from constraints of inflexible hard models or plastinated specimens and engage in the design of class specific models of the future. Anat Sci Educ 11: 65-72. © 2017 American Association of Anatomists.

摘要

两种材料的 3D 打印技术越来越受欢迎,成本低廉且易于获取。在本文中,我们将免费提供的可打印文件与双挤出熔融沉积成型技术相结合,制作了一些功能性解剖模型。为了表示肌肉和骨骼,我们分别使用 FilaFlex 柔性线材和聚乳酸(PLA)线材通过单个 0.4mm 的喷嘴进行挤出,使用 Big Builder 打印机进行打印。对于每种线材,我们都打印了 5mm 的立方体,并分析了 X、Y 和 Z 方向的精度。PLA 打印的立方体在所有方向上的平均误差仅为 1.2%,但 FilaFlex 打印的立方体误差则显著更大(平均为 3.2%)。作为一个范例,我们关注了上呼吸道和颈部的肌肉、骨骼和软骨。最终的单个打印模型结合了柔性和刚性结构。我们构建了一个声带的单个打印模型,使杓状软骨能够在环状软骨上移动,并展示了喉内肌的作用。随着大学图书馆越来越多地提供廉价的 3D 打印服务,学生和教育工作者可能很快就能够访问网站、下载免费模型或 3D 人体部位,只需支付打印耗材的费用。新型模型可以制成可解剖、功能多层单元,并为分段和/或简化解剖提供丰富的可能性。这种方法可以使解剖学家摆脱僵硬的硬模型或塑化标本的限制,从而设计未来具有特定课程特点的模型。《解剖学科学教育》11:65-72. © 2017 美国解剖学家协会。

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