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Dynamic modeling of uteroplacental blood flow in IUGR indicates vortices and elevated pressure in the intervillous space – a pilot study

机译:IUGR子宫胎盘血流的动态模型表明小肠间隙存在涡旋和压力升高–一项初步研究

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摘要

Ischemic placental disease is a concept that links intrauterine growth retardation (IUGR) and preeclampsia (PE) back to insufficient remodeling of uterine spiral arteries. The rheological consequences of insufficient remodeling of uterine spiral arteries were hypothesized to mediate the considerably later manifestation of obstetric disease. However, the micro-rheology in the intervillous space (IVS) cannot be examined clinically and rheological animal models of the human IVS do not exist. Thus, an in silico approach was implemented to provide in vivo inaccessible data. The morphology of a spiral artery and the inflow region of the IVS were three-dimensionally reconstructed to provide a morphological stage for the simulations. Advanced high-end supercomputing resources were used to provide blood flow simulations at high spatial resolution. Our simulations revealed turbulent blood flow (high-velocity jets and vortices) combined with elevated blood pressure in the IVS and increased wall shear stress at the villous surface in conjunction with insufficient spiral artery remodeling only. Post-hoc histological analysis of uterine veins showed evidence of increased trophoblast shedding in an IUGR placenta. Our data support that rheological alteration in the IVS is a relevant mechanism linking ischemic placental disease to altered structural integrity and function of the placenta.
机译:缺血性胎盘疾病是将子宫内生长迟缓(IUGR)和先兆子痫(PE)与子宫螺旋动脉重构不足联系在一起的概念。假设子宫螺旋动脉重构不足的流变学后果可介导产后疾病的相当晚的表现。但是,不能临床检查间质间隙(IVS)中的微流变学,并且不存在人类IVS的流变动物模型。因此,实施了计算机方法以提供体内不可访问的数据。三维重建了螺旋动脉的形态和IVS的流入区域,为仿真提供了形态阶段。先进的高端超级计算资源用于提供高空间分辨率的血流模拟。我们的模拟显示,湍流(高速射流和涡流)与IVS中的血压升高,绒毛表面壁剪切应力增加以及仅螺旋动脉重构不足相结合。子宫静脉的事后组织学分析显示IUGR胎盘中滋养细胞脱落增加的证据。我们的数据支持IVS的流变学改变是将缺血性胎盘疾病与胎盘结构完整性和功能改变联系起来的一种相关机制。

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