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Simulating sauropod manus-only trackway formation using finite-element analysis

机译:使用有限元分析模拟蜥脚类动物仅有轨道形成

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摘要

The occurrence of sauropod manus-only trackways in the fossil record is poorly understood, limiting their potential for understanding loco-motor mechanics and behaviour. To elucidate possible causative mechanisms for these traces, finite-element analyses were conducted to model the indentation of substrate by the feet of Diplodocus and Brachiosaurus. Loading was accomplished by applying mass, centre of mass and foot surface area predictions to a range of substrates to model track formation. Experimental results show that when pressure differs between manus and pes, as determined by the distribution of weight and size of respective autopodia, there is a range of substrate shear strengths for which only the manus (or pes) produce enough pressure to deform the substrate, generating a track. If existing reconstructions of sauropod feet and mass distributions are correct, then different taxa will produce either manus-or pes-only trackways in specific substrates. As a result of this work, it is predicted that the occurrence of manus-or pes-only trackways may show geo-temporal correlation with the occurrence of body fossils of specific taxa. This journal is © 2010 The Royal Society.
机译:在化石记录中只出现了蜥脚类恐龙的仅人类走道,这限制了它们了解运动力学和行为的潜力。为了阐明这些痕迹的可能原因,进行了有限元分析以模拟梁龙和腕龙脚的基底压痕。通过将质量,质心和脚表面积预测应用于一系列基材以模拟轨道形成来完成加载。实验结果表明,当手掌和足管之间的压力不同时(取决于各个自足神经的重量和大小的分布),存在一定范围的基材剪切强度,只有手(或pes)产生足够的压力才能使基材变形,生成轨道。如果现有的蜥脚类动物足的重建和质量分布正确,那么不同的分类单元将在特定的底物上产生仅Manus或Pes的走道。这项工作的结果是,预计仅Manus或pes步道的出现可能与特定分类单元的身体化石的出现具有时空相关性。该期刊为©2010 The Royal Society。

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