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首页> 外文期刊>Communications in Numerical Methods in Engineering >Towards patient-specific material modeling of trabecular bone post-yield behavior
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Towards patient-specific material modeling of trabecular bone post-yield behavior

机译:针对小梁骨屈服后行为的患者特定材料建模

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摘要

Bone diseases such as osteoporosis are one of the main causes of bone fracture and often result in hospital-ization and long recovery periods. Researchers are aiming to develop new tools that consider the multiple determinants acting at the different scales of bone, and which can be used to clinically estimate patient-specific fracture risk and also assess the efficacy of new therapies. The main step towards this goal is a deep understanding of the bone organ, and is achieved by modeling the complexity of the structure and the high variability of the mechanical outcome. This review uses a hierarchical approach to evaluate bone mcchanics at the macroscale, microscale, and nanoscale levels and the interactions between scales. The first section analyzes the experimental evidence of bone mechanics in the elastic and inelastic regions, microdamage generation, and post-yield toughening mechanisms from the organ level to the ultrastructural level. On the basis of these observations, the second section provides an overview of the constitutive models available to describe bone mechanics and predict patient-specific outcomes. Overall, the role of the hierarchical structure of bone and the interplay between each level is highlighted, and their effect is evaluated in terms of modeling biological variability and patient specificity.
机译:骨质疏松症等骨病是骨折的主要原因之一,常常导致住院治疗和恢复期长。研究人员的目标是开发一种新工具,这些工具考虑作用于不同骨骼尺寸的多个决定因素,并可以用于临床评估患者特定的骨折风险并评估新疗法的疗效。达到此目标的主要步骤是对骨骼器官的深入了解,并且可以通过对结构的复杂性和机械结果的高度可变性进行建模来实现。这项审查使用分层的方法来评估宏观,微观和纳米级别的骨力学和规模之间的相互作用。第一部分分析了在弹性和非弹性区域的骨力学,微损伤的产生以及从器官水平到超微结构水平的屈服后增韧机制的实验证据。基于这些观察,第二部分概述了可用于描述骨骼力学和预测患者特定结果的本构模型。总体而言,突出了骨骼的层次结构的作用以及每个层次之间的相互作用,并通过对生物学变异性和患者特异性进行建模来评估其效果。

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