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Human Left Ventricular End-Systolic Pressure-Volume Relationship in a Cylinder Model

机译:圆柱模型中人的左心室收缩末期压力-容积关系

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The relationship between myocardial total force and length at the end of systole appears to be linear, and the slope of this relationship is considered to be an appropriate index of myocardial contractile state, independent of preload and afterload. However, direct measurements of this relation may be impossible in the intact human heart, and thus, alternative indices such as the left ventricular end-systolic stress-length, stress strain, pressure-volume, and pressure-dimension slopes have been proposed to evaluate myocardial contractility in the intact heart. However, the mathematical relationship between the myocardial end-systolic total force-length relation and any of these left ventricular end-systolic relations remains unclear. In this study, assuming a linear myocardial endsystolic total force-length relation in an intact ventricle, we obtained mathematical formulae for the left ventricular end-systolic stress-strain, pressure-radius, and pressure-volume relations, using a cylinder model of the left ventricle. The results obtained using these formulae and the cylinder model were found to match accurately findings obtained from earlier experimental and clinical studies of these left ventricular end-systolic relations. Thus, this model could mathematically account for the relationships between the slopes of the myocardial end-systolic total force-length relation and these left ventricular end-systolic relations
机译:心肌总力与收缩末期长度之间的关系似乎是线性的,并且该关系的斜率被认为是适合于心肌收缩状态的指标,而与前负荷和后负荷无关。但是,在完整的人心脏中可能无法直接测量此关系,因此,已提出了替代指标,例如左心室收缩末期应力长度,应力应变,压力体积和压力维度斜率来评估完整心脏的心肌收缩力。但是,心肌收缩末期总力-长度关系与这些左心室收缩末期关系中的任何一种之间的数学关系仍不清楚。在这项研究中,假设一个完整的心室中线性的心肌收缩期总力-长度关系,我们使用圆柱体模型获得左心室收缩期应力-应变,压力-半径和压力-体积关系的数学公式。左心室。发现使用这些公式和圆柱模型获得的结果与从这些左心室收缩末期关系的早期实验和临床研究中获得的结果准确匹配。因此,该模型可在数学上解释心肌收缩末期总力长关系与这些左心室收缩末期关系的斜率之间的关系。

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