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Characterisation of Mixing in the Proximal Duodenum of the Rat during Longitudinal Contractions and Comparison with a Fluid Mechanical Model Based on Spatiotemporal Motility Data

机译:纵向收缩过程中大鼠近十二指肠混合的特征及与基于时空运动数据的流体力学模型的比较

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摘要

The understanding of mixing and mass transfers of nutrients and drugs in the small intestine is of prime importance in creating formulations that manipulate absorption and digestibility. We characterised mixing using a dye tracer methodology during spontaneous longitudinal contractions, i.e. pendular activity, in 10 cm segments of living proximal duodenum of the rat maintained ex-vivo. The residence time distribution (RTD) of the tracer was equivalent to that generated by a small number (8) of continuous stirred tank reactors in series. Fluid mechanical modelling, that was based on real sequences of longitudinal contractions, predicted that dispersion should occur mainly in the periphery of the lumen. Comparison with the experimental RTD showed that centriluminal dispersion was accurately simulated whilst peripheral dispersion was underestimated. The results therefore highlighted the potential importance of micro-phenomena such as microfolding of the intestinal mucosa in peripheral mixing. We conclude that macro-scale modeling of intestinal flow is useful in simulating centriluminal mixing, whereas multi-scales strategies must be developed to accurately model mixing and mass transfers at the periphery of the lumen.
机译:对小肠中的营养物质和药物的混合和传质的理解对于创建可操纵吸收和消化率的配方至关重要。我们在自发的纵向十二指肠活动的大鼠近端十二指肠的自发性纵向收缩(即摆动活动)过程中使用染料示踪方法进行了混合。示踪剂的停留时间分布(RTD)等于少数几个串联的连续搅拌釜反应器产生的停留时间分布(RTD)。基于纵向收缩的真实序列的流体力学建模预测,分散应主要发生在管腔的外围。与实验RTD的比较表明,可以精确模拟三腔分散,而低估了外围分散。因此,结果强调了微现象的潜在重要性,例如在外周混合中肠粘膜的微折叠。我们得出结论,肠道流动的宏观模型可用于模拟中心管腔混合,而必须开发多尺度策略以精确地模拟管腔外围的混合和传质。

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