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A Microstructurally Inspired Damage Model for Early Venous Thrombus

机译:早期静脉血栓的微观结构激发损伤模型

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摘要

Accumulative damage may be an important contributor to many cases of thrombotic disease progression. Thus, a complete understanding of the pathological role of thrombus requires an understanding of its mechanics and in particular mechanical consequences of damage. In the current study, we introduce a novel microstructurally inspired constitutive model for thrombus that considers a non-uniform distribution of microstructural fibers at various crimp levels and employs one of the distribution parameters to incorporate stretch-driven damage on the microscopic level. To demonstrate its ability to represent the mechanical behavior of thrombus, including a recently reported Mullins type damage phenomenon, we fit our model to uniaxial tensile test data of early venous thrombus. Our model shows an agreement with these data comparable to previous models for damage in elastomers with the added advantages of a microstructural basis and fewer model parameters. We submit that our novel approach marks another important step toward modeling the evolving mechanics of intraluminal thrombus, specifically its damage, and hope it will aid in the study of physiological and pathological thrombotic events.
机译:累积损害可能是许多血栓形成疾病进展的重要因素。因此,全面了解血栓的病理作用需要了解其血栓的力学机制,尤其是损害的机械后果。在当前的研究中,我们介绍了一种新颖的血栓微结构启发性本构模型,该模型考虑了各种卷曲水平下微结构纤维的不均匀分布,并采用了分布参数之一在微观水平上纳入了拉伸驱动的损伤。为了证明其代表血栓机械行为的能力,包括最近报道的Mullins型损伤现象,我们将模型拟合到早期静脉血栓的单轴拉伸试验数据。我们的模型显示出与这些数据的一致性,可与以前的模型进行比较,以显示弹性体的损伤,并具有微观结构基础和更少的模型参数的优点。我们认为,我们的新方法标志着建模腔内血栓演变机制(特别是其损害)的又一重要步骤,并希望它将有助于生理和病理性血栓事件的研究。

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