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生物启发设计的比较方法:将生物多样性和生物学家纳入设计过程。

The Comparative approach to bio-inspired design: integrating biodiversity and biologists into the design process.

作者信息

Penick Clint A, Cope Grace, Morankar Swapnil, Mistry Yash, Grishin Alex, Chawla Nikhilesh, Bhate Dhruv

机构信息

Department of Ecology, Evolution, and Organismal Biology, Kennesaw State University, Kennesaw, GA, 30144USA.

School of Materials Engineering, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Integr Comp Biol. 2022 Jun 29. doi: 10.1093/icb/icac097.

Abstract

Biodiversity provides a massive library of ideas for bio-inspired design, but the sheer number of species to consider can be daunting. Current approaches for sifting through biodiversity to identify relevant biological models include searching for champion adapters that are particularly adept at solving a particular design challenge. While the champion adapter approach has benefits, it tends to focus on a narrow set of popular models while neglecting the majority of species. An alternative approach to bio-inspired design is the comparative method, which leverages biodiversity by drawing inspiration across a broad range of species. This approach uses methods in phylogenetics to map traits across evolutionary trees and compare trait variation to infer structure-function relationships. Although comparative methods have not been widely used in bio-inspired design, they have led to breakthroughs in studies on gecko-inspired adhesives and multifunctionality of butterfly wing scales. Here we outline how comparative methods can be used to complement existing approaches to bioinspired design, and we provide an example focused on bio-inspired lattices, including honeycomb and glass sponges. We demonstrate how comparative methods can lead to breakthroughs in bio-inspired applications as well as answer major questions in biology, which can strengthen collaborations with biologists and produce deeper insights into biological function.

摘要

生物多样性为受生物启发的设计提供了一个庞大的创意库,但需要考虑的物种数量之多可能令人望而生畏。目前用于筛选生物多样性以识别相关生物模型的方法包括寻找特别擅长解决特定设计挑战的“冠军适应者”。虽然“冠军适应者”方法有其优点,但它往往侧重于一小部分流行模型,而忽略了大多数物种。受生物启发的设计的另一种方法是比较方法,该方法通过从广泛的物种中汲取灵感来利用生物多样性。这种方法使用系统发育学方法在进化树上绘制特征,并比较特征变异以推断结构 - 功能关系。尽管比较方法在受生物启发的设计中尚未得到广泛应用,但它们已在壁虎启发的粘合剂和蝴蝶翅膀鳞片的多功能性研究中取得了突破。在这里,我们概述了比较方法如何用于补充现有的受生物启发的设计方法,并提供了一个以受生物启发的晶格(包括蜂窝和玻璃海绵)为重点的示例。我们展示了比较方法如何在受生物启发的应用中取得突破,以及如何回答生物学中的主要问题,这可以加强与生物学家的合作,并对生物功能产生更深入的见解。

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