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首页> 外文期刊>Journal of biomechanical engineering. >Regional Structural and Biomechanical Alterations of the Ovine Main Pulmonary Artery During Postnatal Growth
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Regional Structural and Biomechanical Alterations of the Ovine Main Pulmonary Artery During Postnatal Growth

机译:产后生长期间绵羊主要肺动脉的区域结构和生物力学改变

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The engineering foundation for novel approaches for the repair of congenital defects that involve the main pulmonary artery (PA) must rest on an understanding of changes in the structure-function relationship that occur during postnatal maturation. In the present study, we quantified the postnatal growth patterns in structural and biomechanical behavior in the ovine PA in the juvenile and adult stages. The biaxial mechanical properties and collagen and elastin fiber architecture were studied in four regions of the PA wall, with the collagen recruitment of the medial region analyzed using a custom biaxial mechanical-multiphoton microscopy system. Circumferential residual strain was also quantified at the sinotubular junction and bifurcation locations, which delimit the PA. The PA wall demonstrated significant mechanical anisotropy, except in the posterior region where it was nearly isotropic. Overall, we observed only moderate changes in regional mechanical properties with growth. We did observe that the medial and lateral locations experience a moderate increase in anisotropy. There was an average of about 24% circumferential residual stain present at the luminal surface in the juvenile stage that decreased to 16% in the adult stage with a significant decrease at the bifurcation, implying that the PA wall remodels toward the bifurcation with growth. There were no measurable changes in collagen and elastin content of the tunica media with growth. On average, the collagen fiber recruited more rapidly with strain in the adult compared to the juvenile. Interestingly, the PA thickness remained constant with growth. When this fact is combined with the observed stable overall mechanical behavior and increase in vessel diameter with growth, a simple Laplace Law wall stress estimate suggests an increase in effective PA wall stress with postnatal maturation. This observation is contrary to the accepted theory of maintenance of homeostatic stress levels in the regulation of vascular function and suggests alternative mechanisms regulate postnatal somatic growth. Understanding the underlying mechanisms, incorporating important structural features during growth, will help to improve our understanding of congenital defects of the PA and lay the basis for functional duplication in their repair and replacement.
机译:用于修复涉及主要肺动脉(PA)的先天性缺陷修复的新方法的工程基础必须依赖于在出生后成熟期间发生的结构功能关系的变化。在本研究中,我们在少年和成人阶段中的结构和生物力学行为中量化了产后生长模式。在PA壁的四个区域中研究了双轴机械性能和胶原蛋白和弹性蛋白纤维建筑,使用定制双轴机械 - 多光学显微镜系统分析内侧区域的胶原蛋白募集。周向残余菌株在中药结和分叉位置也定量,其限制了PA。 PA壁显示出显着的机械各向异性,除了在几乎各向同性的后部区域之外。总体而言,我们观察到在区域力学性质的增长中只观察到适度的变化。我们确实观察到内侧和横向位置经历了各向异性的中度增加。在腔表面中存在平均约24%的周向残留染色,在幼年阶段,在成人阶段下降至16%,分叉在分叉下显着降低,这意味着PA壁与生长的分叉重新结合。胶原蛋白和Gunica介质的胶原蛋白含量没有可测量的变化,其增长是生长的。平均而言,胶原纤维与成年人的菌株相比,胶原纤维更快地募集了少年。有趣的是,PA厚度随着增长而保持恒定。当这一事实与观察到的稳定的整体机械行为相结合并且随着血管直径的增加而增加,简单的LAPLACE LAW壁应力估计表明,具有产后性成熟的有效PA壁胁迫增加。该观察结果与血管功能调节中的稳重性胁迫水平的可接受的维持理论相反,并提出了替代机制调节后躯体生长。了解潜在的机制,在增长期间纳入重要的结构特征,将有助于改善我们对PA的先天性缺陷的理解,并为其修复和更换的功能重复奠定基础。

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