Department of Art Sciences and Archaeology, Maritime Cultures Research Institute, Vrije Universiteit Brussel, Brussels, Belgium.
Research Unit: Analytical, Environmental and Geo-Chemistry, Department of Chemistry, Vrije Universiteit Brussel, Brussels, Belgium.
J Morphol. 2023 Jan;284(1):e21528. doi: 10.1002/jmor.21528. Epub 2022 Nov 11.
This paper reports on newly developed ecomorphological models for the cervid intermediate phalanx. Using a geometric morphometric approach, we quantitatively assess the overall gracility of the bone, the depth and concavity of the proximal articulation and the roundness and symmetry of the distal articulation in the intermediate phalanx, to establish relationships between morphology, locomotor behavior and environment. The morphology of the phalanx was found to vary along a gradient from gracile phalanges with shallow proximal articulations in forms adapted to yielding substrate, to robust phalanges with deeper proximal articulations in taxa adapted to firm substrate. Phylogeny and allometry are accounted for using regressions and phylogenetic comparative methods. Although the results indicate phylogeny explains part of the morphological variation, overall the shape of the intermediate phalanx appears mainly driven by differences in function. Consequently, this element promises to be a useful palaeoenvironmental proxy that can be applied on fossil assemblages with cervid remains.
本文报告了新开发的鹿类中间指骨的生态形态模型。使用几何形态测量方法,我们定量评估了骨的整体纤细度、近端关节的深度和凹陷度以及远端关节的圆度和对称性,以建立形态、运动行为和环境之间的关系。发现指骨的形态沿着从适应柔软基质的纤细指骨(近端关节较浅)到适应坚硬基质的粗壮指骨(近端关节较深)的梯度变化。使用回归和系统发育比较方法来解释系统发育和全异速生长。尽管结果表明系统发育解释了部分形态变异,但中间指骨的整体形状似乎主要受功能差异的驱动。因此,这个元素有望成为一个有用的古环境替代物,可以应用于有鹿类遗骸的化石组合。