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The use of digital image correlation in the biomechanical area: a review

机译:数字图像相关在生物力学领域的应用:综述

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This paper offers an overview of the potentialities and limitations of digital image correlation (DIC) as a technique for measuring displacements and strain in biomechanical applications. This review is mainly intended for biomechanists who are not yet familiar with DIC. This review includes over 150 papers and covers different dimensional scales, from the microscopic level (tissue level) up to macroscopic one (organ level). As DIC involves a high degree of computation, and of operator-dependent decisions, reliability of displacement and strain measurements by means of DIC cannot be taken for granted. Methodological problems and existing solutions are summarized and compared, whilst open issues are addressed. Topics addressed include: preparation methods for the speckle pattern on different tissues; software settings; systematic and random error associated with DIC measurement. Applications to hard and soft tissues at different dimensional scales are described and analyzed in terms of strengths and limitations. The potentialities and limitations of DIC are highlighted, also in comparison with other experimental techniques (strain gauges, other optical techniques, digital volume correlation) and numerical methods (finite element analysis), where synergies and complementarities are discussed. In order to provide an overview accessible to different scientists working in the field of biomechanics, this paper intentionally does not report details of the algorithms and codes used in the different studies.
机译:本文概述了数字图像相关性(DIC)作为在生物力学应用中测量位移和应变的技术的潜力和局限性。这篇综述主要针对尚未熟悉DIC的生物力学。这篇综述包括150多篇论文,涵盖了从微观层面(组织层面)到宏观层面(器官层面)的不同尺度。由于DIC涉及大量的计算,并且取决于操作员的决定,因此不能认为通过DIC进行位移和应变测量的可靠性是理所当然的。总结并比较了方法问题和现有解决方案,同时解决了未解决的问题。讨论的主题包括:不同组织上斑点图案的制备方法;软件设置;与DIC测量相关的系统误差和随机误差。根据强度和局限性描述和分析了在不同尺寸范围内对硬组织和软组织的应用。与其他实验技术(应变仪,其他光学技术,数字体积相关)和数值方法(有限元分析)相比,DIC的潜力和局限性也得到了强调,其中讨论了协同作用和互补性。为了提供一个概述,供从事生物力学领域的不同科学家使用,本文特意不介绍有关不同研究中使用的算法和代码的详细信息。

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