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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Elastic characteristics of microspherical embolic agents used for vascular interventional radiology.
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Elastic characteristics of microspherical embolic agents used for vascular interventional radiology.

机译:用于血管介入放射学的微球形栓塞剂的弹性特性。

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摘要

Embolic agents are used in vascular interventional radiology to occlude arteries under pathological conditions. The present study was performed to investigate the material properties of two microspherical embolic agents (MSEAs), tris-acryl gelatin microspheres (TGMS) and superabsorbent polymer microsphere (SAP-MS), using a loading-unloading compression test. The results demonstrated that for both TGMS and SAP-MS, the stress-strain relationship appeared to be linear up to 25% deformation. Therefore, one can reasonably treat TGMS and SAP-MS as linearly elastic materials for this range of deformation and apply the Hertz contact theory for analysis of the Young's modulus. The Young's moduli of TGMS and the SAP-MS obtained by applying Hertz theory under the assumption of a Poisson's ratio of 0.5 were 19.33 +/- 4.97 kPa and 9.64 +/- 2.46 kPa, respectively (mean +/- SD, P<0.001, Mann-Whitney U-test), indicating that TGMS showed higher stiffness than SAP-MS. The effects of a difference in these mechanical characteristics of embolic agents on the performance of interventional radiology were discussed from a viewpoint of their flowing behavior and clinical aspects.
机译:栓塞剂在血管介入放射学中用于在病理情况下阻塞动脉。进行本研究以使用加载/卸载压缩测试来研究两种微球形栓塞剂(MSEA),三丙烯酸丙烯酸明胶微球(TGMS)和超吸收性聚合物微球(SAP-MS)的材料性能。结果表明,对于TGMS和SAP-MS,应力-应变关系在最大25%变形时似乎都是线性的。因此,对于这一变形范围,人们可以合理地将TGMS和SAP-MS视为线性弹性材料,并将赫兹接触理论应用于杨氏模量分析。在泊松比为0.5的情况下应用赫兹理论获得的TGMS和SAP-MS的杨氏模量分别为19.33 +/- 4.97 kPa和9.64 +/- 2.46 kPa(均值+/- SD,P <0.001 ,Mann-Whitney U检验),表明TGMS显示出比SAP-MS高的刚度。从栓塞剂的流动特性和临床方面出发,探讨了栓塞剂这些机械特性差异对介入放射学性能的影响。

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