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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Identification of circumferential regional heterogeneity of ascending thoracic aneurysmal aorta by biaxial mechanical testing
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Identification of circumferential regional heterogeneity of ascending thoracic aneurysmal aorta by biaxial mechanical testing

机译:双轴力学检测识别升胸动脉瘤主动脉的周向区域异质性

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Ascending thoracic aortic aneurysm (ATAA) in patients with bicuspid aortic valve (BAV) can present an asymmetrical aortic dilatation compared with patients with tricuspid aortic valve (TAV). This pattern of aneurysm dilatation led us to hypothesize that biomechanical differences likely induced by regional heterogeneity of material properties can underlie the observed asymmetric enlargement discrepancies between BAV ATAA and TAV ATAA. This study aimed to characterize the mechanical properties and associated aortic tissue stiffness changes along the circumferential direction of aortic rings collected from surgically-repaired patients with ATAA. Biaxial material testing was performed on tissue specimens extrapolated from all aortic quadrants (i.e. anterior, posterior, major and minor curvature of the aorta), and then the tissue stiffness was quantified at both physiological and supra-physiological stress levels (i.e. 142 kPa and 242 kPa, respectively). Tissue stiffness revealed that the major curvature of BAV ATAA is statistically less stiff than the anterior quadrant (276.6 +/- 137.1 kPa for BAV ATAA and 830.1 +/- 557.1 kPa for BAV ATAA, p = .024, at 142 kPa) and to that of major curvature of TAV ATAA (276.6 +/- 137.0 kPa for BAV ATAA and 733.2 +/- 391.1 kPa for TAV ATAA, p = .001, at 142 kPa), suggesting local weakening of bicuspid aortic wall. Multiphoton imaging revealed local changes on elastic fiber networks. The recovered material parameters for the Fung-type constitutive model are crucial for reliable stress predictions while the information on regional tissue stiffness changes are fundamental to develop risk stratification strategies not based on aortic size.
机译:与三尖瓣主动脉瓣膜(TAV)的患者相比,升胸主动脉瘤(ATAA)可以呈现不对称主动脉扩张。这种动脉瘤扩张的模式导致我们假设由物质性质的区域异质性诱导的可能诱导的生物力学差异可以利于BAV ATAA和TAV ATAA之间观察到的不对称扩大差异。该研究旨在表征机械性能和相关的主动脉组织刚度变化沿着从外科ATAA的外科患者收集的主动脉环的圆周方向变化。对从所有主动脉象剂外推的组织试样进行双轴材料测试(即主动脉的前部,后,主要和小曲率),然后在生理和同上生理应激水平(即142kPa和242)的组织刚度进行量化KPA分别)。组织僵硬揭示了BAV ATAA的主要曲率比前象限(276.6 +/- 137.1kPa为BAV ATAA,BAV ATAA的830.1 +/- 557.1kPa,P = .024,在142 kPa)和TAV ATAA的主要曲率(276.6 +/- 137.0 KPA为BAV ATAA和733.2 +/- 391.1 KPA,适用于TAV ATAA,P = .001,在142 kPa),表明双裂主动脉墙的局部弱化。多光子成像显示弹性纤维网络的局部变化。对于真实组织刚度的可靠应力预测是关于区域组织刚度变化的信息的回收的材料参数对于不基于主动脉尺寸的风险分层策略而言,这是基本的。

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