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一种用于描述具有不同组成的正在形成的血凝块及其非线性粘弹性行为的本构模型。

A constitutive model for developing blood clots with various compositions and their nonlinear viscoelastic behavior.

作者信息

van Kempen Thomas H S, Donders Wouter P, van de Vosse Frans N, Peters Gerrit W M

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, PO Box 513, 5600MB, Eindhoven, The Netherlands.

Department of Biomedical Engineering, School for Mental Health and Neuroscience, Maastricht University, Maastricht, The Netherlands.

出版信息

Biomech Model Mechanobiol. 2016 Apr;15(2):279-91. doi: 10.1007/s10237-015-0686-9. Epub 2015 Jun 5.

Abstract

The mechanical properties determine to a large extent the functioning of a blood clot. These properties depend on the composition of the clot and have been related to many diseases. However, the various involved components and their complex interactions make it difficult at this stage to fully understand and predict properties as a function of the components. Therefore, in this study, a constitutive model is developed that describes the viscoelastic behavior of blood clots with various compositions. Hereto, clots are formed from whole blood, platelet-rich plasma and platelet-poor plasma to study the influence of red blood cells, platelets and fibrin, respectively. Rheological experiments are performed to probe the mechanical behavior of the clots during their formation. The nonlinear viscoelastic behavior of the mature clots is characterized using a large amplitude oscillatory shear deformation. The model is based on a generalized Maxwell model that accurately describes the results for the different rheological experiments by making the moduli and viscosities a function of time and the past and current deformation. Using the same model with different parameter values enables a description of clots with different compositions. A sensitivity analysis is applied to study the influence of parameter variations on the model output. The relative simplicity and flexibility make the model suitable for numerical simulations of blood clots and other materials showing similar behavior.

摘要

力学性能在很大程度上决定了血凝块的功能。这些性能取决于凝块的组成,并且与许多疾病相关。然而,各种相关成分及其复杂的相互作用使得现阶段难以完全理解和预测作为成分函数的性能。因此,在本研究中,开发了一种本构模型,该模型描述了具有各种组成的血凝块的粘弹性行为。为此,分别从全血、富血小板血浆和贫血小板血浆中形成凝块,以研究红细胞、血小板和纤维蛋白的影响。进行流变学实验以探究凝块形成过程中的力学行为。使用大振幅振荡剪切变形来表征成熟凝块的非线性粘弹性行为。该模型基于广义麦克斯韦模型,通过使模量和粘度成为时间以及过去和当前变形的函数,准确描述了不同流变学实验的结果。使用具有不同参数值的相同模型能够描述具有不同组成的凝块。应用敏感性分析来研究参数变化对模型输出的影响。相对简单性和灵活性使得该模型适用于血凝块以及表现出类似行为的其他材料的数值模拟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fd8/4792371/7bc497ec2342/10237_2015_686_Fig1_HTML.jpg

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