Perricone Valentina, Grun Tobias, Raia Pasquale, Langella Carla
Department of Engineering, University of Campania Luigi Vanvitelli, Via Roma 29, 81031 Aversa, Italy.
Department of Invertebrate Palaeontology, University of Florida, Florida Museum, Dickinson Hall, Gainesville, FL 32611, USA.
Biomimetics (Basel). 2022 Jul 5;7(3):89. doi: 10.3390/biomimetics7030089.
In biomimetic design, functional systems, principles, and processes observed in nature are used for the development of innovative technical systems. The research on functional features is often carried out without giving importance to the generative mechanism behind them: evolution. To deeply understand and evaluate the meaning of functional morphologies, integrative structures, and processes, it is imperative to not only describe, analyse, and test their behaviour, but also to understand the evolutionary history, constraints, and interactions that led to these features. The discipline of palaeontology and its approach can considerably improve the efficiency of biomimetic transfer by analogy of function; additionally, this discipline, as well as biology, can contribute to the development of new shapes, textures, structures, and functional models for productive and generative processes useful in the improvement of designs. Based on the available literature, the present review aims to exhibit the potential contribution that palaeontology can offer to biomimetic processes, integrating specific methodologies and knowledge in a typical biomimetic design approach, as well as laying the foundation for a biomimetic design inspired by extinct species and evolutionary processes: Paleomimetics. A state of the art, definition, method, and tools are provided, and fossil entities are presented as potential role models for technical transfer solutions.
在仿生设计中,自然界中观察到的功能系统、原理和过程被用于开发创新技术系统。对功能特征的研究往往在不重视其背后生成机制——进化的情况下进行。为了深入理解和评估功能形态、综合结构及过程的意义,不仅要描述、分析和测试它们的行为,还必须了解导致这些特征的进化历史、限制因素和相互作用。古生物学及其方法可以通过功能类比大大提高仿生转移的效率;此外,这一学科以及生物学能够为用于改进设计的生产性和生成性过程开发新的形状、纹理、结构和功能模型。基于现有文献,本综述旨在展示古生物学对仿生过程可能做出的贡献,将特定方法和知识整合到典型的仿生设计方法中,同时为受灭绝物种和进化过程启发的仿生设计——古仿生学奠定基础。文中提供了最新技术水平、定义、方法和工具,并将化石实体作为技术转移解决方案的潜在榜样呈现出来。