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就心室力学特性而言的左心室收缩动力学。

Left ventricular systolic dynamics in terms of its chamber mechanical properties.

作者信息

Shroff S G, Janicki J S, Weber K T

出版信息

Am J Physiol. 1983 Jul;245(1):H110-24. doi: 10.1152/ajpheart.1983.245.1.H110.

Abstract

To determine the mechanical properties of the left ventricle (LV) as a pump, a mathematical model of its systolic dynamics was developed. Initially the model consisted of three elements, i.e., elastance, resistance, and inertance. Results from three experiments, however, indicated that the inertial component was negligible compared with the other two components. The functional forms of elastance and resistance were determined by applying the flow-pulse response technique to an isovolumetrically beating, isolated canine heart. Results from three experiments indicated that the systolic elastance and resistance can be represented by a third-order polynomial in time and a linear function of instantaneous ventricular pressure (LVP), respectively. The simplified model was then tested by calculating the systolic elastance and resistance from LVP, volume, and flow data of an ejecting LV obtained over a single cardiac cycle. A total of 225 combinations (10 expts) of end-diastolic volume (EDV), ejection pressure (EP), heart rate (HR), and contractile state (CS) were evaluated. The results indicated that 1) the elastance function was insensitive to variations in EDV and EP but was a function of CS and HR; 2) the linear resistance-pressure relationship was insensitive to variations in EDV, EP, HR, and CS; and 3) the model could "prospectively" predict the LV isovolumetric pressure from the data of an ejecting beat. Thus a model of LV systolic dynamics has been established that can be used to calculate the intrinsic chamber mechanical properties, i.e., elastance and resistance, of an ejecting LV.

摘要

为了确定作为泵的左心室(LV)的力学特性,建立了其收缩动力学的数学模型。最初,该模型由三个要素组成,即弹性、阻力和惯性。然而,三个实验的结果表明,与其他两个要素相比,惯性成分可忽略不计。通过将流量脉冲响应技术应用于等容搏动的离体犬心,确定了弹性和阻力的函数形式。三个实验的结果表明,收缩期弹性和阻力分别可以用时域的三阶多项式和瞬时心室压力(LVP)的线性函数来表示。然后,通过从单个心动周期中获得的射血左心室的LVP、容积和流量数据计算收缩期弹性和阻力,对简化模型进行了测试。共评估了225种舒张末期容积(EDV)、射血压力(EP)、心率(HR)和收缩状态(CS)的组合(10次实验)。结果表明:1)弹性函数对EDV和EP的变化不敏感,但它是CS和HR的函数;2)线性阻力-压力关系对EDV、EP、HR和CS的变化不敏感;3)该模型可以根据射血搏动的数据“前瞻性”预测左心室等容压力。因此,已经建立了一个左心室收缩动力学模型,可用于计算射血左心室的固有腔室力学特性,即弹性和阻力。

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