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生物力学阐明了鸟类喙部的形态与功能关系。

Biomechanics illuminates form-function relationships in bird bills.

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Bhopal, Bhauri 462066, Madhya Pradesh, India.

出版信息

J Exp Biol. 2023 Apr 25;226(Suppl_1). doi: 10.1242/jeb.245171. Epub 2023 Mar 13.

Abstract

The field of comparative biomechanics examines how form, mechanical properties and environmental interactions shape the function of biological structures. Biomechanics has advanced by leaps and bounds as rapid technological progress opens up new research horizons. In this Review, I describe how our understanding of the avian bill, a morphologically diverse multifunctional appendage, has been transformed by employing a biomechanical perspective. Across functions from feeding to excavating hollows in trees and as a vocal apparatus, the study of the bill spans both solid and fluid biomechanics, rendering it useful to understand general principles across disciplines. The different shapes of the bill across bird species result in functional and mechanical trade-offs, thus representing a microcosm of many broader form-function questions. Using examples from diverse studies, I discuss how research into bird bills has been shaped over recent decades, and its influence on our understanding of avian ecology and evolution. Next, I examine how bill material properties and geometry influence performance in dietary and non-dietary contexts, simultaneously imposing trade-offs on other functions. Following an examination of the interactions of bills with fluids and their role as part of the vocal apparatus, I end with a discussion of the sensory biomechanics of the bill, focusing specifically on the bill-tip mechanosensory organ. With these case studies, I highlight how this burgeoning and consequential field represents a roadmap for our understanding of the function and evolution of biological structures.

摘要

比较生物力学领域研究形态、机械性能和环境相互作用如何塑造生物结构的功能。随着快速技术进步开辟新的研究视野,生物力学取得了突飞猛进的发展。在这篇综述中,我描述了如何通过采用生物力学的观点来改变我们对鸟类喙的理解,鸟类喙是一种形态多样的多功能附属物。从进食到在树上挖掘洞穴以及作为发声器官,喙的研究跨越了固体和流体生物力学,使其成为理解跨学科一般原理的有用工具。不同鸟类物种喙的不同形状导致了功能和机械上的权衡,因此代表了许多更广泛的形态-功能问题的缩影。我通过来自不同研究的例子讨论了最近几十年来鸟类喙研究是如何发展的,以及它对我们理解鸟类生态学和进化的影响。接下来,我研究了喙的材料特性和几何形状如何在饮食和非饮食环境中影响性能,同时对其他功能施加权衡。在考察了喙与流体的相互作用及其作为发声器官一部分的作用之后,我以讨论喙的感觉生物力学结束,重点讨论喙尖机械感觉器官。通过这些案例研究,我强调了这个蓬勃发展和具有重要意义的领域如何为我们理解生物结构的功能和进化提供了路线图。

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