Comparison of orbital asymmetries among some raptor species: “when size does not matter”

P. Parés-Casanova, Jordina Salas-Bosch
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引用次数: 1

Abstract

Abstract A sample of 73 dry, well-preserved skulls was studied, representing various species of raptors with different foraging strategies. The sample included Accipiter nisus (n = 15), Buteo buteo (n = 13), Gyps fulvus (n = 24) and Neophron percnopterus (n = 5), Bubo bubo (n = 16) and Tyto alba (n = 2). Geometric morphometric methods were used to detect orbital asymmetries. On digital pictures of each skull side, a set of 16 semi-landmarks and two landmarks were located in order to describe the orbital ring. The variables were analysed based on Generalized Procrustes analysis. The morphometric data showed that the orbital asymmetry of raptors differed significatively between species, although directional asymmetry (e.g. left orbita systematically more developed than the right) appeared not to be correlated with orbital size. This indicates that larger orbitas do not lead to greater asymmetry. Differences between species should rather be explained by their foraging strategies and degree of visual obstruction in their natural environment.
一些猛禽物种轨道不对称的比较:“当大小无关紧要时”
摘要研究了73个干燥、保存完好的头骨样本,这些头骨代表了不同种类的猛禽,它们有着不同的觅食策略。样本包括nishiiter (n = 15)、Buteo Buteo (n = 13)、Gyps fulvus (n = 24)、Neophron percnopterus (n = 5)、Bubo Bubo (n = 16)和Tyto alba (n = 2)。采用几何形态计量学方法检测眼眶不对称。在每个头骨侧面的数字图像上,一组16个半地标和两个地标被定位,以描述眼眶环。采用广义Procrustes分析法对变量进行分析。形态计量学数据显示,迅猛龙的轨道不对称在不同物种之间存在显著差异,但方向不对称(如左轨道比右轨道系统地更发达)似乎与轨道大小无关。这表明较大的眼窝并不会导致更大的不对称性。物种之间的差异应该由它们在自然环境中的觅食策略和视觉障碍程度来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
0
审稿时长
12 weeks
期刊介绍: Journal for science, research and conservation on birds of prey and owls. Slovak Raptor Journal is issued generally annually and publishes original papers, reviews, short notes and other articles focusing on birds of prey and owls. All articles are published in English.
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