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升主动脉夹层动脉瘤(斯坦福A型夹层)的层特异性生物力学特性。

The layer-specific biomechanical properties of dissecting ascending aortic aneurysm (Stanford type A of dissection).

作者信息

Kozuń Marta, Kaczorowski Maciej, Hałoń Agnieszka

机构信息

Department of Mechanics, Materials and Biomedical Engineering, Wrocław University of Science and Technology, Wrocław, Poland.

Department of Pathomorphology and Oncological Cytology, Wroclaw Medical University, Wrocław, Poland.

出版信息

Acta Bioeng Biomech. 2022;24(2):3-14.

Abstract

PURPOSE

The aims of this paper was the analysis of the mechanical properties of dissected wall of the ascending aortic aneurysm (n = 12).

METHODS

All aortas were collected from men (mean age: 48 ± 12 years, mean diameter of the aneurysm: 49 mm ± 4 mm). The mechanical properties were determined based on directional tensile test. The biomechanical assay was complemented by conducting histological analysis (hematoxylin and eosin, Mallory's trichrome, Azan stain).

RESULTS

The highest values (median) of failure Cauchy stress, failure force, Young's modulus and stiffness coefficient were obtained for the adventitia (σmax = 1.40 MPa, Fmax = 4.05 N, E = 26.11 MPa, k = 1.06 N/mm).

CONCLUSIONS

The results indicate that the mechanical function of the adventitia in healthy tissue and dissected ascending aorta aneurysm is the same, i.e., it protects the vessel against destruction. The failure Cauchy stresses found in the media and intima are comparable and amounted to 0.23 and 0.21 MPa, respectively. The results indicate that dissection affects the mechanical properties of ascending aorta wall layers. The mechanical loads are probably transferred within the dissected aneurysmal wall not only through the media, but also through the intima.

摘要

目的

本文旨在分析升主动脉瘤剥离壁的力学性能(n = 12)。

方法

所有主动脉均取自男性(平均年龄:48±12岁,动脉瘤平均直径:49 mm±4 mm)。基于定向拉伸试验测定力学性能。通过进行组织学分析(苏木精和伊红染色、马洛里三色染色、阿赞染色)对生物力学测定进行补充。

结果

外膜获得了最高值(中位数)的破坏柯西应力、破坏力、杨氏模量和刚度系数(σmax = 1.40 MPa,Fmax = 4.05 N,E = 26.11 MPa,k = 1.06 N/mm)。

结论

结果表明,健康组织和剥离的升主动脉瘤中外膜的力学功能相同,即它保护血管免受破坏。中膜和内膜中发现的破坏柯西应力相当,分别为0.23和0.21 MPa。结果表明,剥离会影响升主动脉壁各层的力学性能。力学载荷可能不仅通过中膜,还通过内膜在剥离的动脉瘤壁内传递。

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