从生物启发角度设计新型组织工程支架的方法论

Q3 Engineering Acta IMEKO Pub Date : 2023-12-22 DOI:10.21014/actaimeko.v12i4.1717
Pierpaolo Fucile, Francesco Lamonaca, Antonio Gloria, Lorenzo Moroni
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引用次数: 0

摘要

多组织再生支架的设计在材料和结构方面非常复杂,这是分层和组织特征的直接结果。TRIZ 是俄语 "创造性问题解决理论"(TIPS)的缩写。TRIZ能够识别和编纂这些原则,利用它们使创造过程更具可预测性。它是一种识别系统冲突和矛盾以解决发明问题的方法。TRIZ 的多学科特点和产品设计的一般方法可以使其成为有系统、有组织地采用生物仿生方法的一个令人感兴趣的起点。生物仿生学旨在实现自然与技术的完全融合。在这种情况下,BioTRIZ与Altshuller理论中的矛盾解决方法相同,代表了一种系统的产品设计生物仿生方法。在当前的研究中,BioTRIZ 被认为是将三维优化支架的生物启发设计过程系统化,用于复杂组织缺损的再生。研究以一种用于骨软骨组织缺损再生的装置为案例。技术解决方案包括设计一种双室、混合和功能分级支架。
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A methodological approach towards the bio-inspired design of novel scaffolds for tissue engineering
The design of scaffolds for multi-tissue regeneration is very complex in terms of material and structure, as a direct consequence of hierarchical and organizational features. TRIZ represents the Russian acronym for the “Theory of Inventive Problem Solving” (TIPS). TRIZ is able to identify and codify such principles, using them to make the creative process more predictable. It is a methodology for the identification of the system conflicts and contradictions in order to solve the inventive problems. Its multidisciplinary features and the general approach to product design can make TRIZ as an intriguing starting point for the biomimetic approach in a systematic and organized way. Biomimetics aims at a complete integration between nature and technology. In this scenario, BioTRIZ shares the contradiction resolution method of the Altshuller’s theory, representing a systematic biomimetic approach towards the product design. In the current study, BioTRIZ was considered to systematize the process of bio-inspired design of 3D optimized scaffolds for the regeneration of complex tissue defects. A device for the regeneration of osteochondral tissue defects was considered as a case study. The technical solutions involved the design of a two-compartment, hybrid and functionally graded scaffold.
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来源期刊
Acta IMEKO
Acta IMEKO Engineering-Mechanical Engineering
CiteScore
2.50
自引率
0.00%
发文量
75
期刊介绍: The main goal of this journal is the enhancement of academic activities of IMEKO and a wider dissemination of scientific output from IMEKO TC events. High-quality papers presented at IMEKO conferences, workshops or congresses are seleted by the event organizers and the authors are invited to publish an enhanced version of their paper in this journal. The journal also publishes scientific articles on measurement and instrumentation not related to an IMEKO event.
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