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Parameter sensitivity analysis of a lumped-parameter model of a chain of lymphangions in series

机译:一个串联的淋巴结链集总参数模型的参数敏感性分析

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Any disruption of the lymphatic system due to trauma or injury can lead to edema. There is no effective cure for lymphedema, partly because predictive knowledge of lymphatic system reactions to interventions is lacking. A welldeveloped model of the system could greatly improve our understanding of its function. Lymphangions, defined as the vessel segment between two valves, are the individual pumping units. Based on our previous lumpedparameter model of a chain of lymphangions, this study aimed to identify the parameters that affect the system output the most using a sensitivity analysis. The system was highly sensitive to minimum valve resistance, such that variations in this parameter caused an order-of-magnitude change in timeaverage flow rate for certain values of imposed pressure difference. Average flow rate doubled when contraction frequency was increased within its physiological range. Optimum lymphangion length was found to be some 13-14.5 diameters. A peak of time-average flow rate occurred when transmural pressure was such that the pressure-diameter loop for active contractions was centered near maximum passive vessel compliance. Increasing the number of lymphangions in the chain improved the pumping in the presence of larger adverse pressure differences. For a given pressure difference, the optimal number of lymphangions increased with the total vessel length. These results indicate that further experiments to estimate valve resistance more accurately are necessary. The existence of an optimal value of transmural pressure may provide additional guidelines for increasing pumping in areas affected by edema.
机译:由于创伤或伤害造成的淋巴系统的任何破坏都可能导致水肿。目前尚无有效的淋巴水肿治疗方法,部分原因是缺乏对淋巴系统对干预措施反应的预测知识。一个完善的系统模型可以极大地增进我们对其功能的理解。淋巴结被定义为两个泵之间的血管段。基于我们先前的淋巴结链的集总参数模型,本研究旨在通过敏感性分析来确定对系统输出影响最大的参数。该系统对最小的阀门阻力高度敏感,因此对于某些施加的压力差值,此参数的变化会导致时间平均流量的数量级变化。当收缩频率在其生理范围内增加时,平均流速增加一倍。发现最佳的淋巴结长度为约13-14.5直径。当透壁压力使主动收缩的压力直径环位于最大被动血管顺应性附近时,会出现时间平均流量的峰值。在存在较大不利压力差的情况下,增加链中淋巴结的数量可改善泵送效果。对于给定的压差,最佳的淋巴结数目会随着总血管长度的增加而增加。这些结果表明,需要进行进一步的实验以更准确地估算阀门阻力。透壁压力的最佳值的存在可为在受水肿影响的区域增加泵送提供其他指导。

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