Faculté des Sciences et Technologie, Université Paris-Est, Créteil Val de Marne, France.
Dept. of Mathematics & Physics, Università Roma Tre, Italy.
J Theor Biol. 2019 Apr 21;467:23-30. doi: 10.1016/j.jtbi.2019.01.034. Epub 2019 Feb 1.
The controversy between passive and active ventricular filling has been debated for decades and the question about the existence of an active diastole remains open. In this work, we advocate the model of active diastole by considering the heart as a suction pump and we add some more clues to support this point of view by the analysis of the pressure-volume (PV) loops of the left heart, comprising of the left ventricle (LV) and atrium (LA). Our working hypothesis is based on the dichotomy motor-brake: the cardiac muscle can act as a motor, when shortening against a load, or as a brake, when lengthening to a load. We discuss our hypothesis by means of a lumped model of the left heart, where both chambers are considered as hollow spherical shells. The notion of active stretch, introduced to describe the contractile behavior of the muscle fibers, plays a major role in our model. Then, the contraction of the muscle is related to the pressure and volume of the chamber through a nonlinear hyperelastic energy density function. Despite its simplicity, the model enlightens some important features of the LV-LA coupling and of the pumping function of the heart. Based on experimental PV data of the left heart of a normal human subject, it is shown that the contraction patterns of the LV and LA are synchronized with each other and have distinguishing features in each phase of the cardiac cycle. These results highlight the interplay between the two chambers and support the idea that the heart may act as a suction pump functioning in turn as a motor or a brake in order to meet specific demands in each phase of the cardiac cycle.
几十年来,被动和主动心室充盈之间的争议一直存在,而关于主动舒张是否存在的问题仍然悬而未决。在这项工作中,我们通过将心脏视为抽吸泵来提倡主动舒张的模型,并且通过分析左心的压力-容积(PV)环,包括左心室(LV)和心房(LA),为这个观点提供了更多的线索支持。我们的工作假设基于动力-刹车的二分法:心肌可以作为马达,在对抗负荷时缩短,或者作为刹车,在向负荷拉长时伸长。我们通过左心的集中模型来讨论我们的假设,其中两个腔室都被视为空心球形壳。引入主动伸展的概念来描述肌肉纤维的收缩行为,在我们的模型中起着重要作用。然后,肌肉的收缩通过非线性超弹性能量密度函数与腔室的压力和体积相关联。尽管模型很简单,但它阐明了 LV-LA 耦合和心脏泵功能的一些重要特征。基于正常人体左心的实验 PV 数据,结果表明 LV 和 LA 的收缩模式彼此同步,并且在心动周期的每个阶段都具有不同的特征。这些结果强调了两个腔室之间的相互作用,并支持这样的观点,即心脏可以作为一个抽吸泵,根据心动周期的每个阶段的特定需求,依次作为马达或刹车来发挥作用。