首页> 外文会议>ASME Bioengineering Conference >CIRCUMFERENTIAL VARIATION OF MECHANICAL PROPERTIES OF ASCENDING AORTA (AA): A COMPARATIVE STUDY OF HEALTHY AND DILATED AA
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CIRCUMFERENTIAL VARIATION OF MECHANICAL PROPERTIES OF ASCENDING AORTA (AA): A COMPARATIVE STUDY OF HEALTHY AND DILATED AA

机译:升高主动脉(AA)的机械性能的周向变化:健康和扩张AA的比较研究

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The biomechanics within the ascending aorta (AA) characterizes the pressure and flow for the entire vascular system. In the aortic wall, it is the structured medial layer that is responsible for the mechanical properties of the AA. The mechanical properties are determined to a large extent by the composition of elastin, collagen and smooth muscle cells (SMCs). Changes in AA biomechanics that arise with age and/or disease can lead to cardiovascular complications and death. Most studies that have investigated the biomechanics of these diseases have assumed homogeneous and isotropic aortic wall properties. Very little work has been done in vitro to determine the local mechanical properties of human vascular tissue. In order to better understand the biomechanics of the human AA, the local properties of pathologic AA tissue from both tricuspid and bicuspid aortic valve patients.
机译:上行主动脉(AA)内的生物力学表征整个血管系统的压力和流动。在主动脉壁中,它是负责AA的机械性能的结构化内侧层。通过弹性蛋白,胶原和平滑肌细胞(SMC)的组成在很大程度上在很大程度上测定机械性能。随着年龄和/或疾病产生的AA生物力学的变化可以导致心血管并发症和死亡。研究了这些疾病的生物力学的大多数研究已经假定均匀和各向同性的主动脉壁特性。在体外已经完成了很少的工作,以确定人血管组织的局部机械性能。为了更好地理解人AA的生物力学,来自三尖瓣和双囊主动脉瓣膜患者的病理AA组织的局部性质。

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