创新程序使用3D设计和打印骨组织的教育和医院的应用

Rolando Borja Inga, Midori Sánchez Sifuentes
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引用次数: 0

摘要

近年来,3D打印已经影响了许多国家的行业,例如在美国和德国,65% -83%的企业现在在他们的流程中使用数字制造。3D打印对于医学来说尤其重要,因为它可以在手术或其他医疗程序之前看到患者身体的完整结构。但是,与使用3D设计或模型相比,更常见的是使用二维可视化,如断层扫描切片或MRI(磁共振成像),通常用于医学教育和医学诊断。本研究的目的是创建一个使用FDM技术制造骨骼解剖模型的程序或流程,这可以用于教育应用和未来在卫生机构或大学中心的实施。然后,利用Invesalius 3.1软件对多边形网格的选择和生成进行分割。同时,使用Meshmixer软件对网格进行清洗和优化。最后利用Netfabb软件,为后续国产3D打印做好3D设计准备。在本研究的方法中,将使用计算机断层扫描的医学图像,以及Invesalius, Meshmixer, Netfabb软件,这将有助于股骨的3D设计,并最终3D打印骨骼模型。同样,结合三维模型验收结果的分析,将得到制造成本和这种制造解剖模型的新流程的实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovator procedure using 3D Design and Printing of bone tissues for educational and hospital applications
In recent years, 3D print has impacted the industry in many countries, for example in the US and Germany, the 65% -83% of their businesses are nowadays using digital manufacturing in their process. 3D printing is especially important for medicine to see the complete structures of the patient's body before surgery or other medical procedures. But it is more common use 2D visualizations such as slices of tomography or MRI (magnetic resonance imaging) always used for medical education and medical diagnosis, than use 3D design or model. The purpose of this study is to create a procedure or flow for the manufacture of a bone anatomical model using FDM technology, and this can be accepted for educational applications and a future implementation in health establishments or university centers. Then, the selection and generation of polygonal meshes were segmented with Invesalius 3.1 software. Also, Meshmixer software was used for cleaning and optimize meshes. Finally, with the use of Netfabb software, the 3D design was prepared for subsequent domestic 3D printing. In the methodology of this research, medical images from a computed tomography will be used, as well as the Invesalius, Meshmixer, Netfabb software, which will help 3D design of the femur, and finally 3D printing of the bone model. Likewise, together with the analysis of the results of the acceptance survey of the three-dimensional model, the cost of manufacturing and the implementation of this new flow of manufacturing anatomical models will be obtained.
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