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Analysis of Uncertainty and Variability in Finite Element Computational Models for Biomedical Engineering: Characterization and Propagation

机译:生物医学工程有限元计算模型中的不确定性和可变性分析:表征和传播

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摘要

Computational modeling has become a powerful tool in biomedical engineering thanks to its potential to simulate coupled systems. However, real parameters are usually not accurately known, and variability is inherent in living organisms. To cope with this, probabilistic tools, statistical analysis and stochastic approaches have been used. This article aims to review the analysis of uncertainty and variability in the context of finite element modeling in biomedical engineering. Characterization techniques and propagation methods are presented, as well as examples of their applications in biomedical finite element simulations. Uncertainty propagation methods, both non-intrusive and intrusive, are described. Finally, pros and cons of the different approaches and their use in the scientific community are presented. This leads us to identify future directions for research and methodological development of uncertainty modeling in biomedical engineering.
机译:由于计算建模具有模拟耦合系统的潜力,因此它已成为生物医学工程中的强大工具。但是,实际参数通常无法准确知道,而可变性是生物体内固有的。为了解决这个问题,已经使用了概率工具,统计分析和随机方法。本文旨在回顾生物医学工程中有限元建模中不确定性和可变性的分析。介绍了表征技术和传播方法,以及它们在生物医学有限元模拟中的应用实例。描述了不确定性传播方法,包括非侵入式和侵入式。最后,介绍了不同方法的优缺点及其在科学界的应用。这使我们为生物医学工程中不确定性建模的研究和方法开发确定了未来的方向。

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