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Utilizing cryogenic grips for dynamic tension testing of human placenta tissue.

机译:利用低温夹具进行人体胎盘组织的动态张力测试。

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摘要

Computational models are used to investigate placental abruption in motor vehicle crashes, which is the leading cause of traumatic fetal injury mortality in the United States. Material parameters for computational modeling of pregnant occupant kinematics come from early research on placenta tissue at quasi-static loading rates. The purpose of this research is to develop a methodology for using cryogenic grips to test placenta specimens in uniaxial tension at a rate normally seen in a motor vehicle crash. For dynamic testing of placental tissue, implementing and adapting a cryogenic grip mechanism provides the ability to grip the tissue throughout the thickness and eliminates potential slipping of the tissue in the grip during the dynamic test. The validation for using the cryogenic grips is presented with video images of a typical test event showing the tissue failing in the active area. Additionally, local and global strain measures are compared to confirm the tissue strain is similar throughout the specimen. The cryogenic grips provide a low-cost and effective method of gripping and pulling a thick soft tissue in uniaxial tension. As a result, these methods can be used to acquire the material properties of placenta tissue loaded at a dynamic rate to apply in a computational pregnant model.
机译:计算模型用于调查机动车碰撞中的胎盘早剥,这是美国创伤性胎儿损伤死亡的主要原因。怀孕乘员运动学计算模型的材料参数来自对胎盘组织的准静态负荷率的早期研究。这项研究的目的是开发一种方法,该方法可使用低温抓握力以通常在汽车碰撞中常见的速率在单轴张力下测试胎盘标本。对于胎盘组织的动态测试,实施和调整低温抓持机制可在整个厚度范围内抓持组织,并消除动态测试过程中组织在抓持中的潜在打滑。使用低温握把的验证与典型测试事件的视频图像一起显示,该视频图像显示组织在活动区域​​中破裂。另外,比较局部和整体应变量度以确认整个样本中的组织应变相似。低温握把提供了一种低成本,有效的方法,可以在单轴张力下握住和拉动厚的软组织。结果,这些方法可用于获取以动态速率加载的胎盘组织的材料特性,以应用于计算怀孕模型。

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