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Using discrete multi-physics for detailed exploration of hydrodynamics in an in vitro colon system

机译:采用离散多物理进行详细探索体外冒号系统中流体动力学的详细探索

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摘要

We developed a mathematical model that describes the motion of viscous fluids in the partially-filled colon caused by the periodic contractions of flexible walls (peristalsis). In-vitro data are used to validate the model. The model is then used to identify two fundamental mechanisms of mass transport: the surfing mode and the pouring mode. The first mechanism is faster, but only involves the surface of the liquid. The second mechanism causes deeper mixing, and appears to be the main transport mechanism. Based on the gained understanding, we propose a series of measures that can improve the reliability of in-vitro models. The tracer in PET-like experiments, in particular, should not be injected in the first pocket, and its viscosity should be as close as possible to that of the fluid. If these conditions are not met, the dynamics of the tracer and the fluid diverge, compromising the accuracy of the in-vitro data.
机译:我们开发了一种数学模型,该模型描述由柔性墙壁(Peristalsis)的周期性收缩引起的部分填充结肠中的粘性流体的运动。 在体外数据用于验证模型。 然后使用该模型来识别大规模传输的两个基本机制:冲浪模式和浇注模式。 第一机制更快,但只涉及液体的表面。 第二种机制导致更深的混合,似乎是主要的运输机制。 根据获得的理解,我们提出了一系列措施,可以提高体外模型的可靠性。 特别地,宠物样实验中的示踪剂不应注射在第一口袋中,并且其粘度应尽可能接近流体。 如果不符合这些条件,则示踪剂的动态和流体发散,损害了体外数据的准确性。

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