首页> 外文会议>Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Association between Mechanics and Structure in Arteries and Veins: Theoretical Approach to Vascular Graft Confection
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Association between Mechanics and Structure in Arteries and Veins: Theoretical Approach to Vascular Graft Confection

机译:动脉和脉管结构与结构的关系:血管移植糖果的理论方法

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Biomechanical and functional properties of tissue engineered vascular grafts must be similar to those observed in native vessels. This supposes a complete mechanical and structural characterization of the blood vessels. To this end, static and dynamic mechanical tests performed in the sheep thoracic and abdominal aorta and the cava vein were contrasted with histological quantification of their main constituents: elastin, collagen and muscle cells. Our results demonstrate that in order to obtain adequate engineered vascular grafts, the absolute amount of collagen fibers, the collagen/elastin ratio, the amount of muscle cells and the muscle cells/elastic fibers ratio are necessary to be determined in order to ensure adequate elastic modulus capable of resisting high stretches, an adequate elastic modulus at low and normal stretch values, the correct viscous energy dissipation, and a good dissipation factor and buffering function, respectively.
机译:组织工程化血管移植物的生物力学和功能性必须与在天然血管中观察到的那些类似。这假设血管的完全机械和结构表征。为此,在绵羊胸部和腹主动脉和静脉静脉中进行的静态和动态机械测试与其主要成分的组织学定量对比:弹性蛋白,胶原蛋白和肌肉细胞。我们的结果表明,为了获得足够的工程血管移植物,胶原纤维的绝对量,胶原/弹性蛋白比例,肌肉细胞量和肌肉细胞/弹性纤维的比率是为了确保足够的弹性能够抵抗高伸展的模量,在低和正常拉伸值下,正确的粘性能量耗散和良好的耗散因子和缓冲功能。

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