首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Phase response curve based model of the SA node: simulation by two-dimensional array of pacemaker cells with randomly distributed cycle lengths.
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Phase response curve based model of the SA node: simulation by two-dimensional array of pacemaker cells with randomly distributed cycle lengths.

机译:基于相位响应曲线的SA节点模型:通过具有随机分布周期长度的起搏器单元的二维阵列进行仿真。

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摘要

A simulation of the SA node is presented, based on a 2D array (15 x 15) model of randomly distributed pacemaker cells, interacting via a phase response curve (PRC). The model involves only the basic properties that play a direct role in the determination of the SA node rhythm: intrinsic cycle length and PRC. The PRC reflects the 'type' of interaction of each pacemaker cell with the outside world (neighbouring cells, external stimulus, etc.). A major outcome of this study is the demonstration that global dynamics and the degree of 'disorder' of the SA node are strongly affected by the cycle length distribution of the model, as well as spatial inhomogeneity in the cell-to-cell 'electrical' coupling (PRC). Those factors also determine the conduction velocity throughout the SA node and may therefore be responsible for anisotropic conduction. For example, lowering the PRC parameters (d and a) by 25% increases the array activation time from 46 to 126 ms. The model also responds appropriately to a perturbation such as a vagal pulse. This pulse produces a shift of the dominant pacemaker to another site in the array and a transient lengthening of the array cycle length, for example from 312 to 355 ms.
机译:基于随机分布的起搏器细胞的2D阵列(15 x 15)模型,通过相响应曲线(PRC)进行交互,对SA节点进行了仿真。该模型仅涉及在SA​​节点节奏确定中起直接作用的基本属性:固有循环长度和PRC。 PRC反映了每个起搏器单元与外界(邻居单元,外部刺激等)相互作用的“类型”。这项研究的主要成果是证明,SA节点的整体动力学和“混乱”程度受模型的周期长度分布以及细胞间“电气”空间的不均匀性的强烈影响耦合(PRC)。这些因素还决定了整个SA节点的传导速度,因此可能导致各向异性传导。例如,将PRC参数(d和a)降低25%,会使阵列激活时间从46 ms增加到126 ms。该模型还可以对诸如迷走脉冲的摄动做出适当响应。此脉冲将使主导起搏器转移到阵列中的另一个位置,并短暂延长阵列周期长度,例如从312到355 ms。

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