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研究心肌梗死后引起的心脏微观结构变化对心脏弹性参数的影响。

Investigating the effects of microstructural changes induced by myocardial infarction on the elastic parameters of the heart.

机构信息

School of Mathematics and Statistics, University of Glasgow, University Place, Glasgow, G12 8QQ, UK.

出版信息

Biomech Model Mechanobiol. 2023 Jun;22(3):1019-1033. doi: 10.1007/s10237-023-01698-2. Epub 2023 Mar 3.

Abstract

Within this work, we investigate how physiologically observed microstructural changes induced by myocardial infarction impact the elastic parameters of the heart. We use the LMRP model for poroelastic composites (Miller and Penta in Contin Mech Thermodyn 32:1533-1557, 2020) to describe the microstructure of the myocardium and investigate microstructural changes such as loss of myocyte volume and increased matrix fibrosis as well as increased myocyte volume fraction in the areas surrounding the infarct. We also consider a 3D framework to model the myocardium microstructure with the addition of the intercalated disks, which provide the connections between adjacent myocytes. The results of our simulations agree with the physiological observations that can be made post-infarction. That is, the infarcted heart is much stiffer than the healthy heart but with reperfusion of the tissue it begins to soften. We also observe that with the increase in myocyte volume of the non-damaged myocytes the myocardium also begins to soften. With a measurable stiffness parameter the results of our model simulations could predict the range of porosity (reperfusion) that could help return the heart to the healthy stiffness. It would also be possible to predict the volume of the myocytes in the area surrounding the infarct from the overall stiffness measurements.

摘要

在这项工作中,我们研究了心肌梗死后观察到的微观结构变化如何影响心脏的弹性参数。我们使用 LMRP 模型(Miller 和 Penta 在 Contin Mech Thermodyn 32:1533-1557, 2020)来描述心肌的微观结构,并研究微观结构变化,如心肌细胞体积减少和基质纤维化增加以及梗死周围区域心肌细胞体积分数增加。我们还考虑了一个 3D 框架来模拟心肌的微观结构,并增加了闰盘,它提供了相邻心肌细胞之间的连接。我们的模拟结果与梗死后可以观察到的生理现象一致。也就是说,梗死的心脏比健康的心脏硬得多,但随着组织的再灌注,它开始变软。我们还观察到,随着非损伤心肌细胞体积的增加,心肌也开始变软。通过可测量的刚度参数,我们的模型模拟结果可以预测能够帮助心脏恢复到健康硬度的孔隙率(再灌注)范围。也可以根据整体刚度测量值预测梗死周围区域心肌细胞的体积。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a6/10167178/1aaa1972d572/10237_2023_1698_Fig1_HTML.jpg

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