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A mechanical model of the human heart relating septal function to myocardial work and energy.

机译:将间隔功能与心肌功和能量相关联的人心脏力学模型。

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A thorough understanding of ventricular interaction and the effects of septal function on right and left ventricular performance in the human heart requires measurement of interventricular pressure gradients using high fidelity pressure transducers. The advent of newer echocardiographic techniques provides an opportunity to combine high resolution images with bi-ventricular catheterization data in the cardiac catheterization laboratory, and obtain the detailed hemodynamic and echocardiographic information necessary to more fully understand the clinical manifestations of normal and abnormal septal and free wall mechanical function. We have anticipated these developments and modified the description of heart mechanics in our integrated multi-scale model of the human cardio-respiratory system (H-CRS) to closely analyze how the mechanical properties of the inter-ventricular septum affect the work, energy utilization, and oxygen consumption of the atria, ventricles, septum, and each ventricular free wall. Combined with the H-CRS model, these modifications allow one to observe how tissue properties of the septum affect the entire heart and circulation. For example, the normal septum transfers energy from the left to the right ventricle, and assists the pre-load of both, acting as a third pump. Diseases that increase septal elastance cause abnormalities resembling left ventricular diastolic dysfunction (LVDD), including a decrease in cardiac output and an increase in pulmonary pressures despite a normal left ventricular ejection fraction. Similar applications of the H-CRS model to other regional disorders such as hypertrophic obstructive cardiomyopathy and myocardial infarction might likewise allow one to study their clinical implications in greater detail.
机译:透彻了解心室相互作用以及间隔功能对人心脏左右心室功能的影响,需要使用高保真压力传感器测量心室压力梯度。新型超声心动图技术的出现提供了将高分辨率图像与心脏导管实验室中的双心室导管术数据相结合的机会,并获得了必要的详细血流​​动力学和超声心动图信息,以更充分地了解正常和异常的间隔和游离壁的临床表现机械功能。我们已经预见到了这些发展,并在我们的人心呼吸系统(H-CRS)集成多尺度模型中修改了心脏力学的描述,以密切分析心室间隔的机械特性如何影响工作,能量利用以及心房,心室,隔膜和每个心室游离壁的耗氧量。结合H-CRS模型,这些修改使人们可以观察到隔垫的组织特性如何影响整个心脏和血液循环。例如,正常的隔垫将能量从左心室转移到右心室,并协助两者的预加载,充当第三泵。间隔弹性增大的疾病会引起类似于左心室舒张功能障碍(LVDD)的异常,包括尽管左心室射血分数正常,但心输出量下降和肺压升高。 H-CRS模型在其他区域性疾病(例如肥厚性梗阻性心肌病和心肌梗塞)中的类似应用可能同样允许人们更详细地研究其临床意义。

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