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Analyzing Taphonomic Deformation of Ankylosaur Skulls Using Retrodeformation and Finite Element Analysis

机译:用逆向变形和有限元分析法分析甲龙头骨的骨架变形

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摘要

Taphonomic deformation can make the interpretation of vertebrate fossil morphology difficult. The effects of taphonomic deformation are investigated in two ankylosaurid dinosaur taxa, Euoplocephalus tutus (to investigate effects on our understanding of intraspecific variation) and Minotaurasaurus ramachandrani (to investigate the validity of this genus). The ratio of orbit maximum rostrocaudal length to perpendicular height is used as a strain ellipse, which can be used to determine if ankylosaur skull fossils have been dorsoventrally compacted during fossilization and diagenesis. The software program Geomagic is used to retrodeform three-dimensional (3D) digital models of the ankylosaur skulls. The effects of sediment compaction are modeled using finite element analysis, and the resulting strain distributions are compared with the retrodeformed models as a test of the retrodeformation method. Taphonomic deformation can account for a large amount of intraspecific variation in Euoplocephalus, but finite element analysis and retrodeformation of Minotaurasaurus shows that many of its diagnostic features are unlikely to result from deformation.
机译:柱面变形可能会使脊椎动物化石形态的解释变得困难。在两个甲龙类恐龙类群中,对突触变形的影响进行了研究(Euoplocephalus tutus(调查对我们对种内变异的理解的影响))和Minotaurasaurus ramachandrani(调查了该属的有效性)。轨道最大后尾骨长度与垂直高度之比用作椭圆形应变,可以用来确定化石和成岩过程中甲龙头骨化石是否在背侧被压实。软件程序Geomagic被用于对甲龙头骨的三维(3D)数字模型进行变形。使用有限元分析对泥沙压实的影响进行建模,并将所得的应变分布与反变形模型进行比较,以作为反变形方法的测试。胎盘变形可以解释大头畸形的大量种内变异,但是对Minotaurasaurus的有限元分析和反变形表明,其许多诊断特征不太可能由变形引起。

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