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Form, Structure, and Function: How Plants vs. Animals Solve Physical Problems INTRODUCTION

机译:形式,结构和功能:如何植物和。 动物解决身体问题介绍

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Plants and animals have evolved solutions for a wide range of mechanical problems, such as adhesion and dispersal. Several of these solutions have been sources for bio-inspiration, like the Lotus Effect for self-cleaning surfaces or Velcro for adhesion. This symposium brought together plant and animal biomechanics researchers who tackle similar problems in different systems under the unifying theme of structure-function relations with relevance to bio-inspiration. For both communities it holds true that the structural systems, which have evolved in the respective organisms to address the mechanical challenges mentioned above, are often highly complex. This requires interdisciplinary research involving "classical" experimental biology approaches in combination with advanced imaging methods and computational modeling. The transfer of such systems into biomimetic technical materials and structures comes with even more challenges, like scalability issues and applicability. Having brought all these topics under one umbrella, this symposium presented the forefront of biophysical basic and application-oriented international research with the goal of facilitation knowledge transfer across systems and disciplines.
机译:植物和动物对广泛的机械问题进行了进化的解决方案,例如粘附和分散。这些解决方案中的几种是生物启发的来源,如莲花效应用于自清洁表面或耐催化剂的粘附。该研讨会汇集了植物和动物生物力学研究人员,这些研究人员在不同系统中解决了不同系统的类似问题,其结构功能关系与生物启发相关。对于两个社区来说,它认为,在各自的生物中演变以解决上述机械挑战的结构系统通常是高度复杂的。这需要跨学科研究涉及“经典”实验生物学方法与先进的成像方法和计算建模相结合。将这种系统转移成仿生技术材料和结构具有更多挑战,如可扩展性问题和适用性。该研讨会在一个伞下带来了所有这些主题,介绍了生物物理基础和以适用于应用的国际研究的最前沿,并通过跨系统和学科的促进知识转移的目标。

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