基于粉末床打印机(PBP)的胸腔主动脉三维打印分析

Hacene Ameddah, H. Mazouz
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引用次数: 1

摘要

近几十年来,血管外科已经出现了血管内技术,用于治疗血管疾病,如主动脉疾病(动脉瘤、夹层和动脉粥样硬化)。通过添加材料的3D打印过程为数字链提供了一个选择,为形状和复杂几何形状的制造开辟了道路,这是以前用传统方法无法实现的。本章着重于成人胸主动脉的生物设计研究。建立基于医学影像的生物设计方案,提取主动脉形状,最后对主动脉进行三维建模;其次,提出了一种基于3D打印的再生医学生物打印方法。利用simulfact Additive软件对生物打印过程进行了仿真,目的是预测打印模型的畸变和残余应力。在粉末床打印机(PBP)床上使用粘合剂注射打印技术。所得到的结果与所发现的误差元素的结果相比是非常可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D Printing Analysis by Powder Bed Printer (PBP) of a Thoracic Aorta Under Simufact Additive
In recent decades, vascular surgery has seen the arrival of endovascular techniques for the treatment of vascular diseases such as aortic diseases (aneurysms, dissections, and atherosclerosis). The 3D printing process by addition of material gives an effector of choice to the digital chain, opening the way to the manufacture of shapes and complex geometries, impossible to achieve before with conventional methods. This chapter focuses on the bio-design study of the thoracic aorta in adults. A bio-design protocol was established based on medical imaging, extraction of the shape, and finally, the 3D modeling of the aorta; secondly, a bio-printing method based on 3D printing that could serve as regenerative medicine has been proposed. A simulation of the bio-printing process was carried out under the software Simufact Additive whose purpose is to predict the distortion and residual stress of the printed model. The binder injection printing technique in a Powder Bed Printer (PBP) bed is used. The results obtained are very acceptable compared with the results of the error elements found.
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