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首页> 外文期刊>Biomaterials >Comparison of the mechanical behaviors of biological tissues subjected to uniaxial tensile testing: pig, calf and ostrich pericardium sutured with Gore-Tex
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Comparison of the mechanical behaviors of biological tissues subjected to uniaxial tensile testing: pig, calf and ostrich pericardium sutured with Gore-Tex

机译:接受Gore-Tex缝合的单轴拉伸试验生物组织的机械行为的比较:猪,小腿和鸵鸟心包

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The purpose of this study was to compare the mechanical behavior of calf pericardium, pig pericardium and ostrich pericardium when subjected to tensile testing. Tensile stress was applied to 108 tissue samples, 36 of each type of tissue, until rupture. Groups of three adjacent strips measuring 12 x 2 cm 2 were cut longitudinally. Each group consisted of an unsutured center sample, or control, and the two contiguous samples, that on the right sutured with Gore-Tex at a 90degrees angle with respect to the longitudinal axis and that on the left sewn with the same suture material at 45degrees angle. The sutured samples showed a statistically significant loss of resistance (p < 0.001) when compared with the corresponding unsutured tissue. The mean stresses at rupture for sutured ostrich pericardium were 21.81 and 20.81 MPa in the samples sewn at 45degrees and 90degrees, respectively, higher than those corresponding to unsutured calf and pig pericardium, 14.0 and 11.49 MPa, respectively, at rupture. The analysis of the stress/strain curve shows a smaller difference between sutured and unsutured ostrich pericardium than those observed in the other two biomaterials. These results demonstrate that, in addition to its greater resistance, ostrich pericardium also presents a less pronounced interaction with the suture material. Its capacity to absorb the shearing stress produced by the suture is greater. This report also confirms that the method of selection using paired samples ensures their homogeneity and makes it possible to predict the behavior of a sample by determining that of the other half of the pair. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 29]
机译:这项研究的目的是比较小腿心包,猪心包和鸵鸟心包在进行拉伸测试时的力学行为。向108个组织样本(每种组织中的36个样本)施加拉伸应力直至破裂。纵向切成三组相邻的12×2cm 2的条。每组包括一个未缝合的中心样本或对照,以及两个连续的样本,右边的样本是用Gore-Tex相对于纵轴成90度角缝合的,左边的是用相同的缝合材料以45度缝合的角度。与相应的未缝合组织相比,缝合后的样品显示出统计学上的显着抗性损失(p <0.001)。缝合的鸵鸟心包在破裂时的平均应力分别为45度和90度,分别为21.81和20.81 MPa,高于未缝合的小牛和猪心包的破裂时的平均应力分别为14.0 MPa和11.49 MPa。应力/应变曲线的分析显示,缝合的和未缝合的鸵鸟心包之间的差异小于在其他两种生物材料中观察到的差异。这些结果表明,鸵鸟心包膜除了具有更大的抵抗力外,还与缝合线材料的相互作用较小。它吸收缝合线产生的剪切应力的能力更大。该报告还证实,使用配对样本进行选择的方法可确保其同质性,并有可能通过确定配对另一半的样本来预测样本的行为。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:29]

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