Suppr超能文献

基于图像的分析和模拟在单轴应变下血小板储存温度对血栓力学的影响。

Image-based analysis and simulation of the effect of platelet storage temperature on clot mechanics under uniaxial strain.

机构信息

Department of Mechanical Engineering, San José State University, San Jose, CA, 95192, USA.

Department of Chemical and Materials Engineering, San José State University, San Jose, CA, 95192, USA.

出版信息

Biomech Model Mechanobiol. 2020 Feb;19(1):173-187. doi: 10.1007/s10237-019-01203-8. Epub 2019 Jul 16.

Abstract

Optimal strength and stability of blood clots are keys to hemostasis and in prevention of hemorrhagic or thrombotic complications. Clots are biocomposite materials composed of fibrin network enmeshing platelets and other blood cells. We have previously shown that the storage temperature of platelets significantly impacts clot structure and stiffness. The objective of this work is to delineate the relationship between morphological characteristics and mechanical response of clot networks. We examined scanning electron microscope images of clots prepared from fresh apheresis platelets, and from apheresis platelets stored for 5 days at room temperature or at 4 °C, suspended in pooled plasma. Principal component analysis of nine different morphometric parameters revealed that a single principal component (PC1) can distinguish the effect of platelet storage on clot ultrastructure. Finite element analysis of clot response to uniaxial strain was used to map the spatially heterogeneous distribution of strain energy density for each clot. At modest deformations (25% strain), a single principal component (PC2) was able to predict these heterogeneities as quantified by variability in strain energy density distribution and in linear elastic stiffness, respectively. We have identified structural parameters that are primary regulators of stress distribution, and the observations provide insights into the importance of spatial heterogeneity on hemostasis and thrombosis.

摘要

最优的血液凝块强度和稳定性是止血和预防出血或血栓并发症的关键。凝块是由纤维蛋白网络交织血小板和其他血细胞组成的生物复合材料。我们之前已经表明,血小板的储存温度显著影响凝块的结构和刚性。这项工作的目的是描绘凝块网络的形态特征和力学响应之间的关系。我们检查了从新鲜的单采血小板制备的凝块的扫描电子显微镜图像,以及在室温或 4°C 下储存 5 天的单采血小板悬浮在混合血浆中制备的凝块。对九个不同形态参数的主成分分析表明,单个主成分(PC1)可以区分血小板储存对凝块超微结构的影响。对凝块对单轴应变的响应的有限元分析用于为每个凝块映射应变能密度的空间不均匀分布。在适度的变形(25%应变)下,单个主成分(PC2)能够预测这些各向异性,如应变能密度分布和线弹性刚度的变化分别量化的那样。我们已经确定了结构参数,这些参数是应力分布的主要调节剂,这些观察结果提供了对空间异质性在止血和血栓形成中的重要性的深入了解。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验