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Estimating cranial musculoskeletal constraints in theropod dinosaurs

机译:估计兽脚类恐龙的颅骨肌肉骨骼约束

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摘要

Many inferences on the biology, behaviour and ecology of extinct vertebrates are based on the reconstruction of the musculature and rely considerably on its accuracy. Although the advent of digital reconstruction techniques has facilitated the creation and testing of musculoskeletal hypotheses in recent years, muscle strain capabilities have rarely been considered. Here, a digital modelling approach using the freely available visualization and animation software Blender is applied to estimate cranial muscle length changes and optimal and maximal possible gape in different theropod dinosaurs. Models of living archosaur taxa (Alligator mississippiensis, Buteo buteo) were used in an extant phylogenetically bracketed framework to validate the method. Results of this study demonstrate that Tyrannosaurus rex, Allosaurus fragilis and Erlikosaurus andrewsi show distinct differences in the recruitment of the jaw adductor musculature and resulting gape, confirming previous dietary and ecological assumptions. While the carnivorous taxa T. rex and Allo. fragilis were capable of a wide gape and sustained muscle force, the herbivorous therizinosaurian E. andrewsi was constrained to small gape angles.
机译:关于灭绝脊椎动物的生物学,行为和生态学的许多推论都是基于肌肉组织的重建,并且很大程度上依赖于其准确性。尽管近年来数字重建技术的出现促进了肌肉骨骼假说的创建和测试,但很少考虑肌肉劳损能力。在这里,使用免费提供的可视化和动画软件Blender的数字建模方法被应用于估计颅骨长度的变化以及不同兽脚类恐龙的最佳和最大可能的间隙。在现存的系统发育括号内的框架中使用了活的恐龙分类群(鳄鱼密西西比,But)的模型来验证该方法。这项研究的结果表明,霸王龙,脆弱的异特龙和雄性安德鲁斯在下颌内收肌组织的招募和造成的气胀方面显示出明显的差异,这证实了以前的饮食和生态学假设。而食肉类群的霸王龙和阿洛。脆弱类动物具有很宽的间隙和持续的肌肉力量,草食性蜥脚类恐龙安德鲁斯被限制在较小的间隙角上。

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