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Modeling of hypertension-induced left ventricular hypertrophy

机译:高血压诱发的左心室肥大模型

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A theoretical model of the left ventricle capable of predicting shape and size in relation to the loading and metabolic conditions is presented and applied to the study of hypertension-induced hypertrophy (HIH). Oxygen consumption per gram tissue is imposed as the control parameter. HIH is produced by progressively increasing mean aortic pressure (MAP) on the normo-tensive model. The focus is on the hemodynamic variations that accompany HIH. The model results clearly indicate an increase in wall-thickness-to-diameter ratio of the left ventricle as the MAP is increased, while the cardiac output is constant (concentric hypertrophy). The hemodynamic parameters show an increase in stroke volume, stroke work, and global oxygen consumption; a decrease in heart rate and efficiency; and relatively constant mean fiber stress. Hence, regulation of metabolic rates in the myocyte appears to be a basic mechanism that leads to HIH.
机译:提出了一种能够预测与负荷和代谢状况有关的形状和大小的左心室理论模型,并将其用于高血压诱发的肥大(HIH)研究。每克组织的耗氧量作为控制参数。 HIH是通过在正常血压模型上逐渐增加平均主动脉压(MAP)产生的。重点是HIH伴随的血液动力学变化。模型结果清楚地表明,随着MAP的增加,左心室壁厚与直径之比增加,而心输出量不变(同心肥大)。血液动力学参数显示中风量,中风功和总耗氧量增加。心率和效率下降;和相对恒定的平均纤维应力。因此,调节心肌细胞中的代谢速率似乎是导致HIH的基本机制。

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