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生物打印的计算机辅助设计与制造(CAD/CAM)。

Computer-Aided Design and Manufacturing (CAD/CAM) for Bioprinting.

机构信息

SMART Infrastructure Facility, Faculty of Engineering & Information Sciences, University of Wollongong, Wollongong, NSW, Australia.

出版信息

Methods Mol Biol. 2020;2140:27-41. doi: 10.1007/978-1-0716-0520-2_3.

Abstract

Three-dimensional (3D) printing of human tissues and organs has been an exciting area of research for almost three decades [Bonassar and Vacanti. J Cell Biochem. 72(Suppl 30-31):297-303 (1998)]. The primary goal of bioprinting, presently, is achieving printed constructs with the overarching aim toward fully functional tissues and organs. Technology, in hand with the development of bioinks, has been identified as the key to this success. As a result, the place of computer-aided systems (design and manufacturing-CAD/CAM) cannot be underestimated and plays a significant role in this area. Unlike many reviews in this field, this chapter focuses on the technology required for 3D bioprinting from an initial background followed by the exciting area of medical imaging and how it plays a role in bioprinting. Extraction and classification of tissue types from 3D scans is discussed in addition to modeling and simulation capabilities of scanned systems. After that, the necessary area of transferring the 3D model to the printer is explored. The chapter closes with a discussion of the current state-of-the-art and inherent challenges facing the research domain to achieve 3D tissue and organ printing.

摘要

三维(3D)打印人体组织和器官已经成为近三十年令人兴奋的研究领域[Bonassar 和 Vacanti. J Cell Biochem. 72(Suppl 30-31):297-303 (1998)]。目前,生物打印的主要目标是实现具有总体目标的打印结构,即完全功能性的组织和器官。技术与生物墨水的发展一起被确定为成功的关键。因此,计算机辅助系统(设计和制造-CAD/CAM)的地位不可低估,并在该领域发挥着重要作用。与该领域的许多评论不同,本章重点介绍了从初始背景开始的 3D 生物打印所需的技术,以及令人兴奋的医学成像领域及其在生物打印中的作用。此外,还讨论了从 3D 扫描中提取和分类组织类型,以及扫描系统的建模和模拟功能。之后,探讨了将 3D 模型传输到打印机的必要区域。最后,讨论了实现 3D 组织和器官打印所面临的研究领域的最新技术和固有挑战。

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