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Mechanics of flow and mixing at antroduodenal junction

机译:十二指肠交界处的流动和混合力学

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The morphology of tissue structures composing the pyloric orifice is thought to play a role in effectively mixing aqueous gastric effluent with duodenal secretions. To understand the physical mechanisms leading to efficient digestion requires computational models that allow for analyses of the contributions of individual structural components. Thus, we have simulated 2-D channel flows through representative models of the duodenum with moving boundary capabilities in order to quantitatively assess the importance of notable features. A well-tested flow solver was used to computationally isolate and compare geometric and kinematic parameters that lead to various characteristics of fluid motion at the antroduodenal junction. Scalar variance measurement was incorporated to quantify the mixing effectiveness of each component. It was found that the asymmetric geometry of the pyloric orifice in concert with intermittent gastric outflow and luminal constriction is likely to enhance homogenization of gastric effluent with duodenal secretions.
机译:组成幽门孔的组织结构的形态被认为在有效地混合水性胃液与十二指肠分泌物方面发挥了作用。要了解导致有效消化的物理机制,需要计算模型,该模型可以分析各个结构成分的作用。因此,我们已经模拟了具有运动边界能力的十二指肠代表性模型的二维通道流,以定量评估显着特征的重要性。经过良好测试的流动求解器用于计算隔离和比较几何和运动学参数,这些参数可导致十二指肠交界处流体运动的各种特征。标量方差测量被合并以量化每种成分的混合效果。已发现幽门口的不对称几何形状与间歇性胃流出和管腔收缩相配合可能会增强十二指肠分泌物的胃流出物的均质化。

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