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The experimental and theoretical investigation of force-interval relationship in the developing chick myocardium

机译:浅谈鸡肉心肌中力间关系的实验与理论研究

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摘要

The force-interval relationship was studied on myocardium preparations from chick embryos and hatched chickens. It is shown that the force-interval relationships of myocardium change during ontogenesis. A negative staircase (a decrease in the isometric force with increasing stimulation rate) in the chick embryo myocardium and a positive steady-state relationship in hatched stage myocardium were revealed. Changes in the force after switching from one stimulation frequency to another, the effects of poststimulation potentiation, as well as responses to the introduction of pauses and extrasystols at a constant stimulation rate were recorded. All the effects observed in the transient processes in preparations from hatched stage myocardium were more pronounced than in embryo myocardium. Our previous mathematical model of calcium recirculation in cardiomyocytes was adapted for simulating the main features of force-interval relationships in embryonal and relatively developed myocardium. The main source of regulatory calcium in the model of hatched stage myocardium is sarcoplasmic reticulum. In the model of embryo myocardium, it was postulated, based on data available in literature, that the main regulator of contractile response of the muscle is calcium that enters cardiomyocytes from extracellular medium. To describe force-interval relationships, by this model, the decreasing dependence of the entry of extracellular calcium on the intervals between stimuli was introduced.
机译:从小鸡胚胎和阴影鸡的心肌制剂中研究了力间隔关系。结果表明,在梭菌期间心肌变化的力间关系。揭示了阴道胚芽心肌中的阴性楼梯(随着刺激率的增加)减少,孵化阶段心肌中的阳性稳态关系。从一个刺激频率切换到另一种刺激频率后的力的变化,记录了后刺激增强的影响,以及在恒定刺激率下引入暂停和额外稳定术的反应。在孵化阶段心肌的制剂中观察到的所有效果比在胚胎心肌中更明显。我们以前的心肌细胞钙再循环的数学模型适用于模拟胚胎和相对发育的心肌中的力间关系的主要特征。阴影阶段心肌模型中调节钙的主要来源是肌肉网的特征。在胚芽心肌模型中,基于文献中的数据假设,肌肉收缩响应的主要调节器是从细胞外培养基进入心肌细胞的钙。为了描述力间隔关系,通过该模型,引入了细胞外钙在刺激之间的间隔的依赖性降低。

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