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Finite element analysis in vertebrate biomechanics

机译:脊椎动物生物力学的有限元分析

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摘要

This special issue of The Anatomical Record presents a series of papers that apply the method of finite element analysis (FEA) to questions in vertebrate biomechanics. These papers are salient examples of the use of FEA to test hypotheses regarding structure-function relationships in complexly shaped biological objects such as skulls and in areas of the skeleton that are otherwise impervious to study. FEA is also a powerful tool for studying patterns of stress and strain in fossil animals and artificial constructs hypothesized to represent ancestral conditions. FEA has been used deductively, to study patterns of growth and development, and to investigate whether skull shapes can be created from amorphous blocks using an iterative approach of loading and removing elements. Several of the papers address methodological issues, such as the relative importance of loading conditions and material properties for generating an accurate model and the validation of models using in vivo strain data. Continuing improvements in model building techniques will make possible increased application of FEA to study the functional effects of variation in morphology, whether through ontogenetic or phylogenetic transformations. (c) 2005 Wiley-Liss, Inc.
机译:这种解剖记录的特殊问题呈现了一系列论文,将有限元分析(FEA)的方法应用于脊椎动物生物力学中的问题。这些论文是使用FEA的突出的例子,以测试关于在复杂形状的生物物体(如颅骨和骨骼区域)中的结构功能关系的假设,这些骨骼和骨骼的区域被否则无法进行研究。 FEA也是研究化石动物的压力和应变模式的强大工具,假设祖先条件的人工构建体。 FEA已被减除,研究生长和发展模式,并调查是否可以使用迭代的装载和去除元素的迭代方法从非晶块中创建头骨形状。其中几篇论文解决了方法论问题,例如加载条件和材料特性的相对重要性,以产生准确的模型和使用体内应变数据的模型的验证。模型建筑技术的持续改进将使FEA的应用增加,以研究形态变异的功能影响,无论是通过植入或系统发育转化。 (c)2005 Wiley-Liss,Inc。

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