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警惕黑箱:研究有限元分析模拟在比较生物力学中对建模因素的敏感性。

Beware the black box: investigating the sensitivity of FEA simulations to modelling factors in comparative biomechanics.

机构信息

Department of Anatomy and Developmental Biology, School of Biomedical Sciences, Monash University , Melbourne, Victoria , Australia ; School of Engineering, University of Newcastle , Newcastle, New South Wales , Australia.

出版信息

PeerJ. 2013 Nov 5;1:e204. doi: 10.7717/peerj.204. eCollection 2013.

Abstract

Finite element analysis (FEA) is a computational technique of growing popularity in the field of comparative biomechanics, and is an easily accessible platform for form-function analyses of biological structures. However, its rapid evolution in recent years from a novel approach to common practice demands some scrutiny in regards to the validity of results and the appropriateness of assumptions inherent in setting up simulations. Both validation and sensitivity analyses remain unexplored in many comparative analyses, and assumptions considered to be 'reasonable' are often assumed to have little influence on the results and their interpretation. HERE WE REPORT AN EXTENSIVE SENSITIVITY ANALYSIS WHERE HIGH RESOLUTION FINITE ELEMENT (FE) MODELS OF MANDIBLES FROM SEVEN SPECIES OF CROCODILE WERE ANALYSED UNDER LOADS TYPICAL FOR COMPARATIVE ANALYSIS: biting, shaking, and twisting. Simulations explored the effect on both the absolute response and the interspecies pattern of results to variations in commonly used input parameters. Our sensitivity analysis focuses on assumptions relating to the selection of material properties (heterogeneous or homogeneous), scaling (standardising volume, surface area, or length), tooth position (front, mid, or back tooth engagement), and linear load case (type of loading for each feeding type). Our findings show that in a comparative context, FE models are far less sensitive to the selection of material property values and scaling to either volume or surface area than they are to those assumptions relating to the functional aspects of the simulation, such as tooth position and linear load case. Results show a complex interaction between simulation assumptions, depending on the combination of assumptions and the overall shape of each specimen. Keeping assumptions consistent between models in an analysis does not ensure that results can be generalised beyond the specific set of assumptions used. Logically, different comparative datasets would also be sensitive to identical simulation assumptions; hence, modelling assumptions should undergo rigorous selection. The accuracy of input data is paramount, and simulations should focus on taking biological context into account. Ideally, validation of simulations should be addressed; however, where validation is impossible or unfeasible, sensitivity analyses should be performed to identify which assumptions have the greatest influence upon the results.

摘要

有限元分析(FEA)是比较生物力学领域日益流行的计算技术,是进行生物结构形态-功能分析的一种易于获取的平台。然而,近年来它从一种新颖的方法发展成为一种常见的实践方法,这就需要对其结果的有效性和模拟设置中固有的假设的适当性进行一些审查。在许多比较分析中,验证和敏感性分析仍然没有得到探索,并且被认为是“合理”的假设通常被认为对结果及其解释的影响很小。在这里,我们报告了一项广泛的敏感性分析,其中对七种鳄鱼物种的下颌骨进行了高分辨率有限元(FE)模型分析,这些模型在比较分析中典型的载荷下进行了分析:咀嚼、晃动和扭转。模拟探索了在常用输入参数变化下,对绝对响应和种间结果模式的影响。我们的敏感性分析集中于与材料特性选择(异质或同质)、比例(标准化体积、表面积或长度)、牙齿位置(前牙、中牙或后牙啮合)和线性载荷情况(每种喂食类型的加载类型)相关的假设。我们的研究结果表明,在比较背景下,FE 模型对材料特性值和比例的选择(体积或表面积)的敏感性远低于对模拟功能方面的假设(例如牙齿位置和线性载荷情况)的敏感性。结果显示,在模拟假设之间存在复杂的相互作用,这取决于假设的组合以及每个标本的整体形状。在分析中保持模型之间的假设一致并不能确保结果可以推广到使用的特定假设集之外。逻辑上,不同的比较数据集也会对相同的模拟假设敏感;因此,建模假设应该经过严格选择。输入数据的准确性至关重要,模拟应重点考虑考虑生物学背景。理想情况下,应解决模拟验证问题;但是,在无法进行验证或不可行的情况下,应进行敏感性分析,以确定哪些假设对结果的影响最大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2974/3828634/f07d63779d80/peerj-01-204-g001.jpg

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