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在生理和超生理负荷下完整和分层解剖的人颈动脉的双轴力学性能。

Biaxial mechanical properties of intact and layer-dissected human carotid arteries at physiological and supraphysiological loadings.

机构信息

Institute of Biomechanics, Center of Biomedical Engineering, Graz University of Technology, Austria.

出版信息

Am J Physiol Heart Circ Physiol. 2010 Mar;298(3):H898-912. doi: 10.1152/ajpheart.00378.2009. Epub 2009 Dec 24.

Abstract

Specimens of intact wall tubes of human common carotid arteries (CCA), internal carotid arteries (ICA) (n = 11, age 77.6 yr, SD 6.3), and related adventitia and media-intima tubes are mechanically examined. Cyclic, quasi-static extension-inflation tests at different axial stretches are performed on preconditioned tube specimens. Stress-free configurations show significant stress releases in the circumferential direction of the intact CCA and ICA walls and in the axial directions of the intact CCA walls and the CCA and ICA adventitias. All investigated tissues exhibit strong nonlinear, pseudoelastic mechanical behavior with small hysteresis. The "inversion" feature, where the pressure/axial stretch relationship becomes a vertical line, is found only for intact walls. Axial "inversion stretches" are 1.15 (SD 0.06) for CCA and 1.14 (SD 0.06) for ICA, and related external axial forces are 0.43 N (SD 0.15) and 0.30 N (SD 0.22), respectively. Significant negative correlations between age and axial inversion stretches for CCA (r = -0.67, P = 0.03) and ICA (r = -0.29, P = 0.04) are identified. Adventitias are very compliant at low pressures, but change into stiff tubes at high pressures. The burst pressure of the adventitia is beyond 250 kPa. A relatively low burst pressure of approximately 60 kPa is found in the media-intima tubes, in which the pressure/circumferential stretch relationships are almost independent of the axial stretches. Stress analyses indicate a high degree of material anisotropy for all investigated tissues. High circumferential and axial stresses occur in the media-intima tubes at physiological conditions. The obtained data are intended to serve for an improvement of constitutive laws, determination of constitutive parameters, and enhancing our knowledge of the mechanical functions of arteries and their associated layers in specific pathophysiological and clinical problems, such as hypertension and angioplasty with stenting.

摘要

对 11 个人体颈总动脉(CCA)、颈内动脉(ICA)(年龄 77.6 岁,标准差 6.3)完整管壁标本以及相关的外膜和中膜-内膜管进行力学检测。对预处理后的管标本进行不同轴向拉伸的循环、准静态拉伸-膨胀测试。无应力构型显示,完整的 CCA 和 ICA 管壁在圆周方向和 CCA 管壁及 CCA 和 ICA 外膜的轴向方向上存在明显的应力释放。所有研究的组织都表现出很强的非线性、拟弹性力学行为,滞后很小。仅在完整壁中发现“反转”特征,即压力/轴向拉伸关系成为一条垂直线。CCA 的轴向“反转拉伸”为 1.15(标准差 0.06),ICA 为 1.14(标准差 0.06),相应的外部轴向力分别为 0.43 N(标准差 0.15)和 0.30 N(标准差 0.22)。CCA(r=-0.67,P=0.03)和 ICA(r=-0.29,P=0.04)的年龄与轴向反转拉伸之间存在显著负相关。外膜在低压力下非常柔顺,但在高压力下变为硬管。外膜的破裂压力超过 250 kPa。中膜-内膜管的破裂压力相对较低,约为 60 kPa,压力/圆周拉伸关系几乎与轴向拉伸无关。应力分析表明,所有研究的组织都具有高度的各向异性。在生理条件下,中膜-内膜管内会产生很高的圆周和轴向应力。获得的数据旨在用于改进本构定律、确定本构参数,并增强我们对特定病理生理和临床问题(如高血压和血管成形术伴支架置入)中动脉及其相关层的力学功能的认识。

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