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使用基于功能的分类和多种形态测量方法研究脊椎动物爪的功能形态。

Functional morphology of vertebrate claws investigated using functionally based categories and multiple morphological metrics.

机构信息

University of California, Davis, Davis, California, USA.

出版信息

J Morphol. 2021 Mar;282(3):449-471. doi: 10.1002/jmor.21317. Epub 2021 Jan 18.

Abstract

The link between claw morphology and function has been historically difficult to quantify, analyze, and interpret. In this study, the functional morphology of vertebrate claws is analyzed using measurements taken from 80 modern claw specimens spanning birds, mammals, and one reptile. Claw measurements were chosen for their potential biomechanical significance and a revised, expanded categorization of claw function is defined and used. This categorization scheme is the result of an extensive literature review and is based on the observed mechanics of claw function rather than the animal's overall ecology, an important departure from the norm followed in previous studies. A principal component analysis of the claw measurements reveals that some of the morphological disparity is related to functional differences; however, different functional categories are not clearly separated based solely on morphology. A linear discriminant analysis successfully classifies 81.25% of the claw specimens to their documented functional categories. When the posterior probabilities of each classification are examined, and the next highest probabilities are considered, the analysis is able to successfully classify 96.25% of the claw specimens. Expressing angle measurements in terms of lengths prior to analysis and incorporating cross-sectional shape data both serve to reduce the misclassification rate. The use of biomechanically meaningful claw measurements and categories based on function (rather than ecology) improves confidence in the ability to infer claw function based on morphology using discriminant analysis methods. While overall claw morphology is most certainly the result of multiple factors (e.g., growth, size, etc.), this study establishes that it reflects mechanical function more than previously demonstrated.

摘要

爪形态与功能之间的联系在历史上很难进行量化、分析和解释。在这项研究中,通过对 80 个现代爪标本的测量,分析了脊椎动物爪的功能形态,这些标本涵盖了鸟类、哺乳动物和一种爬行动物。选择爪的测量值是因为它们具有潜在的生物力学意义,并且定义和使用了经过修订和扩展的爪功能分类。该分类方案是广泛文献综述的结果,基于爪功能的观察力学,而不是基于动物的整体生态,这与之前研究中遵循的常规做法有重要区别。对爪测量值的主成分分析表明,一些形态差异与功能差异有关;然而,仅基于形态并不能清楚地将不同的功能类别区分开来。线性判别分析成功地将 81.25%的爪标本分类到其记录的功能类别中。当检查每个分类的后验概率,并考虑下一个最高概率时,分析能够成功地将 96.25%的爪标本分类。在分析之前用长度表示角度测量值,并结合横截面形状数据,都有助于降低错误分类率。使用基于功能(而非生态)的生物力学有意义的爪测量值和类别,可以提高基于形态使用判别分析方法推断爪功能的能力的可信度。虽然整体爪形态肯定是多种因素的结果(例如,生长、大小等),但本研究表明,它比以前的研究更能反映机械功能。

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