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Features of a probabilistic model of intracardiac electrical activity during atrial fibrillation

机译:心房颤动期间心内电活动概率模型的特征

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Electrophysiological models of the heart, developed and studied to date, show the presence of many discrete events in time, leading to the propagation of electrical activity signals and allowing synchronizing (normally) the work of all parts of the heart. When considering models of heart rhythm management, at least two main levels can be distinguished: intra- and extracardiac. Each of these levels can also be divided into several sublevels. Intracardiac effects that regulate heart rate include the myogenic, intercellular, intracardiac nervous system and the effects of intracardiac humoral factors (produced in the heart itself). Extracardiac effects include neuroreflex and general humoral regulation of cardiac activity. Probabilistic models of the processes of cardiac activity are mainly used to describe heart rate variability at an extracardiac level. At the same time, probabilistic models were practically not used for the processes underlying the automatism of the heart at the intracardiac level. A probabilistic model of heart rate dynamics is proposed based on the concept of heart contraction because of the influence of many hierarchical random events. The results of the probabilistic modeling presented in the work are in good agreement with the well-known bioelectric models that describe the dynamics of intracardiac activity and make it possible to use a sequence of RR durations (for example, a rhythmogram and a pulsogram) to detect various latent cardiac abnormalities, in particular, atrial fibrillation.
机译:迄今为止开发和研究的心脏电生理模型显示出及时存在许多离散事件,从而导致电活动信号的传播并允许(正常情况下)同步心脏各部分的工作。在考虑心律管理模型时,至少可以区分两个主要级别:心内和心外。这些级别中的每个级别也可以分为几个子级别。调节心率的心内效应包括肌源性,细胞间,心内神经系统以及心内体液因子(在心脏本身中产生)的影响。心外作用包括神经反射和心脏活动的一般体液调节。心脏活动过程的概率模型主要用于描述心外水平的心率变异性。同时,在心内膜水平上,几乎没有将概率模型用于心脏自动性的基础过程。由于许多分层随机事件的影响,基于心脏收缩的概念提出了一种心率动力学的概率模型。这项工作中提出的概率模型的结果与描述心内活动动态的众所周知的生物电模型非常吻合,并使得可以使用一系列的RR持续时间(例如,心律图和脉搏图)来检测各种潜在的心脏异常,尤其是房颤。

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