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人胎盘的动态拉伸特性

Dynamic tensile properties of human placenta.

作者信息

Manoogian Sarah J, Bisplinghoff Jill A, McNally Craig, Kemper Andrew R, Santago Anthony C, Duma Stefan M

机构信息

Virginia Tech-Wake Forest, Center for Injury Biomechanics, Randolph 100F, MC 0238, Blacksburg, VA 24061, USA.

出版信息

J Biomech. 2008 Dec 5;41(16):3436-40. doi: 10.1016/j.jbiomech.2008.09.020. Epub 2008 Nov 8.

Abstract

Automobile crashes are the largest cause of injury death for pregnant females and the leading cause of traumatic fetal injury mortality in the United States. Computational models, useful tools to evaluate the risk of fetal loss in motor vehicle crashes, are based on a limited number of quasi-static material tests of the placenta. This study presents a total of 20 dynamic uniaxial tensile tests on the maternal side of the placenta and 10 dynamic uniaxial tensile tests on the chorion layer of the placenta. These tests were completed from 6 human placentas to determine material properties at a strain rate of 7.0 strains/s. The results show that the average peak strain at failure for both the maternal portion and the chorion layer of the placenta are similar with a value of 0.56 and 0.61, respectively. However, the average failure stress for the chorion layer, 167.8 kPa, is much higher than the average failure stress for the placenta with the chorionic plate removed, 18.6 kPa. This is due to differences in the structure and function of these layers in the placenta. In summary, dynamic loading data for the placenta have been determined for use in computational modeling of pregnant occupant kinematics in motor vehicle crashes. Moreover the computational model should utilize the material properties for the placenta without the chorion layer.

摘要

在美国,汽车碰撞是导致怀孕女性受伤死亡的最大原因,也是导致创伤性胎儿损伤死亡的主要原因。计算模型是评估机动车碰撞中胎儿丢失风险的有用工具,它基于对胎盘进行的有限数量的准静态材料测试。本研究对胎盘母体侧进行了总共20次动态单轴拉伸试验,对胎盘绒毛膜层进行了10次动态单轴拉伸试验。这些试验使用6个人类胎盘完成,以确定应变率为7.0应变/秒时的材料特性。结果表明,胎盘母体部分和绒毛膜层失效时的平均峰值应变相似,分别为0.56和0.61。然而,绒毛膜层的平均失效应力为167.8 kPa,远高于去除绒毛膜板的胎盘的平均失效应力18.6 kPa。这是由于胎盘中这些层的结构和功能存在差异。总之,已确定胎盘的动态加载数据,用于机动车碰撞中怀孕乘车人运动学的计算建模。此外,计算模型应采用去除绒毛膜层的胎盘的材料特性。

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