Department of Biomedical Engineering, Thoraxcenter, Erasmus MC, University Medical Center, Rotterdam, The Netherlands.
Department of Hematology, Erasmus MC, University Medical Center Rotterdam, Rotterdam, The Netherlands.
Ann Biomed Eng. 2023 Aug;51(8):1759-1768. doi: 10.1007/s10439-023-03181-6. Epub 2023 Apr 18.
Endovascular thrombectomy procedures are significantly influenced by the mechanical response of thrombi to the multi-axial loading imposed during retrieval. Compression tests are commonly used to determine compressive ex vivo thrombus and clot analogue stiffness. However, there is a shortage of data in tension. This study compares the tensile and compressive response of clot analogues made from the blood of healthy human donors in a range of compositions. Citrated whole blood was collected from six healthy human donors. Contracted and non-contracted fibrin clots, whole blood clots and clots reconstructed with a range of red blood cell (RBC) volumetric concentrations (5-80%) were prepared under static conditions. Both uniaxial tension and unconfined compression tests were performed using custom-built setups. Approximately linear nominal stress-strain profiles were found under tension, while strong strain-stiffening profiles were observed under compression. Low- and high-strain stiffness values were acquired by applying a linear fit to the initial and final 10% of the nominal stress-strain curves. Tensile stiffness values were approximately 15 times higher than low-strain compressive stiffness and 40 times lower than high-strain compressive stiffness values. Tensile stiffness decreased with an increasing RBC volume in the blood mixture. In contrast, high-strain compressive stiffness values increased from 0 to 10%, followed by a decrease from 20 to 80% RBC volumes. Furthermore, inter-donor differences were observed with up to 50% variation in the stiffness of whole blood clot analogues prepared in the same manner between healthy human donors.
血管内血栓切除术的过程受到血栓对提取过程中多轴向加载的机械反应的显著影响。压缩试验常用于确定体外压缩血栓和类似物的刚性。然而,在拉伸方面的数据却不足。本研究比较了不同成分的健康人类供体血液制成的类似物在拉伸和压缩下的反应。从六位健康人类供体中采集枸橼酸盐全血。在静态条件下制备收缩和未收缩的纤维蛋白凝块、全血凝块和用一系列红细胞(RBC)体积浓度(5-80%)重建的凝块。使用定制的装置进行了单轴拉伸和无约束压缩试验。在拉伸下发现了近似线性的名义应力-应变曲线,而在压缩下观察到了强烈的应变硬化曲线。通过对名义应力-应变曲线的初始和最终 10%应用线性拟合,获得了低应变和高应变的刚性值。拉伸刚度值约为低应变压缩刚度的 15 倍,高应变压缩刚度的 40 倍。拉伸刚度随血液混合物中 RBC 体积的增加而降低。相比之下,高应变压缩刚度值从 0 增加到 10%,然后从 20 到 80%RBC 体积减少。此外,在相同条件下制备的全血类似物的刚性在不同健康人类供体之间存在高达 50%的差异。