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Rigid-bar loading on pregnant uterus and development of pregnant abdominal response corridor based on finite element biomechanical model

机译:基于有限元生物力学模型的孕妇子宫刚性加载和孕妇腹部反应走廊的发育

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During pregnancy, traumas can threaten maternal and fetal health. Various trauma effects on a pregnant uterus are little investigated. In the present study, a finite element model of a uterus along with a fetus, placenta, amniotic fluid, and two most effective ligament sets is developed. This model allows numerical evaluation of various loading on a pregnant uterus. The model geometry is developed based on CT-scan data and validated using anthropometric data. Applying Ogden hyper-elastic theory, material properties of uterine wall and placenta are developed. After simulating the "rigid-bar" abdominal loading, the impact force and abdominal penetration are investigated. Findings are compared with the experimental abdominal response corridor, previously developed for a nonpregnant abdomen. "Response corridor" denotes a bounded envelope in response space, within which the system responses usually lie. Results show that at low abdominal penetrations (less than 45 mm), the pregnant abdomen response is highly compatible with the nonpregnant case. While, at large penetrations, the pregnant abdomen demonstrates stiffer behavior. The reason must be the existence of a fetus in the model. This reveals that the existing response corridors would not be reliable to be extended for a pregnant abdomen. Hence, response corridor development for a pregnant abdomen is a crucial task. In this study, a new fixed-back rigid-bar loading response corridor is proposed for a pregnant abdomen using the load-penetration behavior of the developed model. This model and response corridor can help to study the pregnant uterus response to environmental loading and investigate the injury risk to the uterus and fetus.
机译:在怀孕期间,外伤会威胁孕妇和胎儿的健康。妊娠子宫受到的各种创伤影响鲜有研究。在本研究中,建立了胎儿,胎盘,羊水和两个最有效的韧带集的子宫有限元模型。该模型允许对怀孕子宫上的各种负荷进行数值评估。模型几何是基于CT扫描数据开发的,并使用人体测量数据进行了验证。应用奥格登超弹性理论,开发了子宫壁和胎盘的材料特性。模拟“刚性”腹部负荷后,研究冲击力和腹部穿透力。将结果与先前针对非怀孕腹部开发的实验性腹部反应通道进行比较。 “响应走廊”表示响应空间中的有界信封,系统响应通常位于该信封中。结果表明,在低腹部穿透力(小于45毫米)下,孕妇的腹部反应与未怀孕的病例高度兼容。较大的穿透力时,怀孕的腹部表现出较硬的行为。原因一定是模型中存在胎儿。这表明,现有的反应通道不能可靠地扩展到怀孕的腹部。因此,妊娠腹部的反应通道发育是至关重要的任务。在这项研究中,使用开发的模型的载荷穿透行为,为孕妇的腹部提出了一种新的固定式背板刚性载荷响应通道。该模型和反应走廊可以帮助研究孕妇子宫对环境负荷的反应,并调查对子宫和胎儿的伤害风险。

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