首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >3D DIGITIZATION OF COMPLEX EXHIBITION ITEMS (MOUNTED SKELETONS OF DINOSAURS) AND GENERATION OF VIRTUAL REPLICAS FOR BIOMECHANICAL STUDIES
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3D DIGITIZATION OF COMPLEX EXHIBITION ITEMS (MOUNTED SKELETONS OF DINOSAURS) AND GENERATION OF VIRTUAL REPLICAS FOR BIOMECHANICAL STUDIES

机译:复杂展览项目的3D数字化(恐龙的安装骨架)和生物力学研究的虚拟复制品的生成

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The work presented here is part of a broader study concerning the biomechanical analysis of the movement of dinosaurs, which will be done by the finite element method (FEM). For this aim, it will be necessary to count on virtual models of the walking system (that is to say, the foot, leg, etc.) and the substrate on which the dinosaur moved. Both kinds of models can be approximately inferred from fossil remains: bones for the former and ichnites (fossil footprints) for the latter. Obviously, there are important challenges in these models, let us see, for example, that a group of fossil bones (probably incomplete and deteriorate) is very far from a walking animal with not only the bones and the articulations but also with flesh, tendons, skin, claws and so on. In any case, fossil bones are the only material we have to start modelling. Therefore, the first step will be their 3D digitization. As the expected use of the 3D models defines, the technical characteristics that these models need to comply with, the manuscript will reflect on the qualities that the models for biomechanical purposes need, paying attention to the completeness, geometric accuracy and resolution. Moreover, a practical case is presented with a comparison of a scanning technology (fringe projection) and close range photogrammetry in order to model a 2 meters tall leg of a specimen of Edmontosaurus.
机译:这里提出的工作是关于恐龙运动的生物力学分析的更广泛研究的一部分,这将通过有限元方法(FEM)来完成。为此目的,有必要计算行走系统的虚拟模型(也就是说,脚,腿等)和恐龙移动的基板。两种型号可以大致从化石推断出来的遗骸:后者的前者和米尼斯(化石足迹)的骨头。显然,这些模型存在重要挑战,例如,让我们看看,例如,一组化石骨(可能不完全和恶化)非常远离行走的动物,不仅具有骨骼和铰接,还与肉体,肌腱,皮肤,爪子等。无论如何,化石骨骼是我们必须开始建模的唯一物料。因此,第一步将是它们的3D数字化。随着3D模型的预期使用定义,这些模型需要遵守的技术特征,稿件将反映了生物力学目的需要的模型需要,请注意完整性,几何准确性和分辨率。此外,通过比较扫描技术(条纹突起)和近距离摄影测量的比较,以模拟Edmontosaurus标本的2米高的腿部。

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