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植物的功能形态——仿生应用的关键。

Functional morphology of plants - a key to biomimetic applications.

机构信息

Plant Biomechanics Group @ Botanic Garden, Faculty of Biology, University of Freiburg, Schänzlestraße 1, Freiburg, D-79104, Germany.

Cluster of Excellence livMatS @ FIT - Freiburg Center for Interactive Materials and Bioinspired Technologies, University of Freiburg, Georges-Köhler-Allee 105, Freiburg, D-79110, Germany.

出版信息

New Phytol. 2021 Aug;231(3):950-956. doi: 10.1111/nph.17396. Epub 2021 May 17.

Abstract

Learning from living organisms has emerged from a mainly curiosity-driven examination, where helpful functions of biological structures have been copied, into systematic biomimetic approaches that transfer a targeted function and its underlying principles from the biological model to a technical product. Plant biomimetics is based on functional morphology, which combines the knowledge gained from the morphology, anatomy and mechanics of plants and makes a statement about their form-structure-function relationship. Since the functional morphology of plants has become key to biomimetic applications, we present its central role in deciphering the functional principles that can be applied to engineering solutions. We consider that the future of biomimetics will include bioinspired developments that will contribute to better sustainability than that achieved by conventional products.

摘要

从主要由好奇心驱动的研究中,生物体学习已经从对生物结构的有益功能进行复制,发展为系统的仿生方法,将生物模型中的目标功能及其背后的原理转移到技术产品中。植物仿生学基于功能形态学,它结合了从植物形态、解剖和力学中获得的知识,并对它们的形态-结构-功能关系做出了说明。由于植物的功能形态学已成为仿生应用的关键,我们提出了它在破译可应用于工程解决方案的功能原理方面的核心作用。我们认为,仿生学的未来将包括受生物启发的发展,这将有助于比传统产品实现更好的可持续性。

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