Constraining the body mass range of Anzu wyliei using volumetric and extant-scaling methods

Kyle Atkins-Weltman, E. Snively, P. O’Connor
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引用次数: 1

Abstract

The ability to accurately and reliably estimate body mass of extinct taxa is a vital tool for interpreting the physiology and even behavior of long-dead animals. For this reason, paleontologists have developed many possible methods of estimating the body mass of extinct animals, with varying degrees of success. These methods can be divided into two main categories: volumetric mass estimation and extant scaling methods. Each has advantages and disadvantages, which is why, when possible, it is best to perform both, and compare the results to determine what is most plausible within reason. Here we employ volumetric mass estimation (VME) to calculate an approximate body mass for previously described specimens of Anzu wyliei from the Carnegie Museum of Natural History. We also use extant scaling methods to try to obtain a reliable mass estimate for this taxon.  In addition, we present the first digital life restoration and convex hull of the dinosaur Anzu wyliei used for mass estimation purposes. We found that the volumetric mass estimation using our  digital model was 216-280kg, which falls within the range predicted by extant scaling techniques, while the mass estimate using minimum convex hulls was below the predicted range, between 159-199 kg . The VME method for Anzu wyliei strongly affirms the predictive utility of extant-based scaling. However, volumetric mass estimates are likely more precise because the models are based on comprehensive specimen anatomy rather than regressions of a phylogenetically comprehensive but disparate sample.
用体积法和现存尺度法约束安祖威利的体重范围
准确可靠地估计已灭绝分类群的体重是解释死亡已久的动物的生理甚至行为的重要工具。由于这个原因,古生物学家开发了许多可能的方法来估计灭绝动物的体重,并取得了不同程度的成功。这些方法可分为两大类:体积质量估计法和现存标度法。每一种方法都有优点和缺点,这就是为什么,在可能的情况下,最好同时进行两种方法,并比较结果,以确定哪种方法在合理范围内最合理。在这里,我们采用体积质量估计(VME)来计算以前描述的卡内基自然历史博物馆的安祖威利标本的近似体重。我们还使用现有的尺度方法来尝试获得该分类群的可靠质量估计。此外,我们还展示了第一个用于质量估计目的的安祖威列伊恐龙的数字生命恢复和凸壳。我们发现,使用我们的数字模型的体积质量估计为216-280kg,这在现有缩放技术预测的范围内,而使用最小凸壳的质量估计低于预测范围,在159-199 kg之间。Anzu wyliei的VME方法有力地肯定了基于现存尺度的预测效用。然而,体积质量估计可能更精确,因为模型是基于全面的标本解剖,而不是基于系统发育全面但不同的样本的回归。
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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