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Non-linear parameter estimation of volume sensitivity of the coronary resistance in the isolated canine septum

机译:犬齿隔中冠状动脉阻力的容积敏感性的非线性参数估计

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Common parameters to describe the coronary circulation are resistances (Rs) and capacitances (Cs). In six isolated, maximally dilated, perfused, non-contracting canine interventricular septa, the Rs and Cs at different pressure levels were estimated by obtaining the inflow-pressure transfer functions (Q/P) and volume-pressure transfer functions (T/P). To interpret the data, simple lumped two compartment RCR models were fitted. Models with fixed resistances could not fit simultaneously Q/P and T/P. Therefore models with volume dependent parameters were tested as well. However, these models had more parameters, which could not be uniquely identified from the data. Many parameter sets, which predicted adequate transfer functions, were created. After comparing these parameter sets, it was concluded that the first resistance and the first capacitance could be estimated, furthermore a relation between the distal capacitance and the volume sensitivity of the third resistance was found: the higher the capacitance, the lower the sensitivity.
机译:描述冠状动脉循环的常用参数是电阻(Rs)和电容(Cs)。通过获得入流压力传递函数(Q / P)和体积压力传递函数(T / P),在六个孤立的,最大扩张,灌注,非收缩的犬室间隔中,估算不同压力水平下的Rs和Cs 。为了解释数据,安装了简单的集总两室RCR模型。具有固定电阻的模型不能同时拟合Q / P和T / P。因此,还测试了具有体积相关参数的模型。但是,这些模型具有更多参数,无法从数据中唯一标识。创建了许多预测适当传递函数的参数集。比较这些参数集后,得出可以估算出第一电阻和第一电容的结论,此外,还发现了远端电容与第三电阻的体积灵敏度之间的关系:电容越高,灵敏度越低。

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