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Time varying elastance and cardiac muscle energetics based on calcium kinetics and crossbridges cycling

机译:基于钙动力学和跨桥循环的时变弹性和心肌能量

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The study relates to the control of the mechanical activity of the cardiac muscle by coupling calcium kinetics with crossbridge cycling. Two main feedback mechanisms affect the performance of the contractile filaments: 1) cooperativity, in which the affinity of troponin for calcium is a function of the number of cycling crossbridges, and 2) mechanical feedback where the velocity of filament sliding affects crossbridge turnover rate from the strong to the weak conformation. This intracellular control mechanism describes the performances of the skinned and intact cardiac muscle at various loading conditions, i.e. the force-length and the force-velocity relationships and the control of relaxation. The model can also describe the effect of various loading conditions on the work and ATP consumption. Using this approach, a mechanism for the time varying elastance of the left ventricle is proposed.
机译:该研究涉及通过将钙动力学与跨桥循环耦合来控制心肌的机械活动。两种主要的反馈机制会影响可收缩细丝的性能:1)协同性,其中肌钙蛋白对钙的亲和力是循环桥的数量的函数; 2)机械反馈,其中细丝滑动的速度会影响到强到弱构象。这种细胞内控制机制描述了皮肤和完整的心肌在各种负荷条件下的性能,即力-长度和力-速度的关系以及松弛的控制。该模型还可以描述各种负载条件对功和ATP消耗的影响。使用这种方法,提出了一种用于左心室的时变弹性的机制。

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