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首页> 外文期刊>American Journal of Physiology >Dynamic myocardial contractile parameters from left ventricular pressure-volume measurements.
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Dynamic myocardial contractile parameters from left ventricular pressure-volume measurements.

机译:来自左心室压力容量测量的动态心肌收缩参数。

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A new dynamic model of left ventricular (LV) pressure-volume relationships in beating heart was developed by mathematically linking chamber pressure-volume dynamics with cardiac muscle force-length dynamics. The dynamic LV model accounted for >80% of the measured variation in pressure caused by small-amplitude volume perturbation in an otherwise isovolumically beating, isolated rat heart. The dynamic LV model produced good fits to pressure responses to volume perturbations, but there existed some systematic features in the residual errors of the fits. The issue was whether these residual errors would be damaging to an application where the dynamic LV model was used with LV pressure and volume measurements to estimate myocardial contractile parameters. Good agreement among myocardial parameters responsible for response magnitude was found between those derived by geometric transformations of parameters of the dynamic LV model estimated in beating heart and those found by direct measurement in constantlyactivated, isolated muscle fibers. Good agreement was also found among myocardial kinetic parameters estimated in each of the two preparations. Thus the small systematic residual errors from fitting the LV model to the dynamic pressure-volume measurements do not interfere with use of the dynamic LV model to estimate contractile parameters of myocardium. Dynamic contractile behavior of cardiac muscle can now be obtained from a beating heart by judicious application of the dynamic LV model to information-rich pressure and volume signals. This provides for the first time a bridge between the dynamics of cardiac muscle function and the dynamics of heart function and allows a beating heart to be used in studies where the relevance of myofilament contractile behavior to cardiovascular system function may be investigated.
机译:通过数学上将腔室压力-体积动力学与心肌力-长度动力学联系起来,建立了一个跳动的心脏左心室(LV)压力-体积关系的新动力学模型。动态LV模型占了由等振幅跳动的离体大鼠心脏中小振幅体积扰动引起的压力变化的80%以上。动态LV模型可以很好地拟合压力对体积扰动的响应,但是拟合的残差存在一些系统特征。问题是这些残留误差是否会对动态LV模型与LV压力和体积测量值一起用于估算心肌收缩参数的应用造成损害。在通过跳动的心脏中估计的动态LV模型参数的几何变换得出的参数与在持续激活的分离的肌纤维中直接测量得到的参数之间发现了负责反应幅度的心肌参数之间的良好一致性。在两种制剂的每一种中估计的心肌动力学参数之间也发现了良好的一致性。因此,将LV模型拟合到动态压力-体积测量中产生的较小的系统残留误差不会干扰使用动态LV模型来估计心肌的收缩参数。通过明智地将动态LV模型应用于信息丰富的压力和体积信号,可以从跳动的心脏中获得心肌的动态收缩行为。这首次为心肌功能的动力学与心脏功能的动力学之间的桥梁提供了桥梁,并允许跳动的心脏用于可能研究肌丝收缩行为与心血管系统功能相关性的研究中。

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