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首页> 外文期刊>Journal of cardiovascular electrophysiology >Atrial excitation assuming uniform propagation.
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Atrial excitation assuming uniform propagation.

机译:心房兴奋假设传播均匀。

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INTRODUCTION: We investigated the spread of the excitation wave over the atria following initiation in a given focus in an atrial model containing its overall geometry only, i.e., without atrial bundles. METHODS AND RESULTS: The propagation velocity of the excitation wave was taken to be uniform, and the wall thickness was discarded. The timing of excitation of any point on the atrium thus becomes directly proportional to its shortest distance over the atrial wall to the focus. Despite these gross simplifications, the general nature of the excitation sequence found corresponded closely to clinical data reported in the literature. This suggests that the complex overall geometry of the atria dominates the timing of the excitation. A highly intriguing observation from this study was that, when looking at the pathways from the sinus node to all other points on the atrium, prominent routes became visible even though no such pathways formed part of the model of the atrial geometry used. The locations of these prominent routes coincide with those of various distinct bundles in the atria. Possible inferences of these observations are discussed. CONCLUSION: Based upon comparison with data from other studies, it is concluded that, during stable heart rhythms, propagation of the atrial excitation wave is well approximated by an assumption of uniform velocity, even though no atrial bundles were included in the model. The overall geometry seems to be the dominant factor in the spread of excitation.
机译:简介:我们在仅包含其总体几何形状(即不包含心房束)的心房模型中,在给定的焦点下研究了激发波在心房上的散布。方法与结果:激发波的传播速度均匀,壁厚被舍弃。因此,心房上任何点的激发时间与其在心房壁上到焦点的最短距离成正比。尽管进行了这些大的简化,但是发现的激发序列的一般性质与文献中报道的临床数据非常接近。这表明,心房复杂的整体几何形状决定了激励的时机。这项研究的一个非常有趣的发现是,当观察从窦房结到心房所有其他点的路径时,即使没有这样的路径构成所用心房几何模型的一部分,也可以看到明显的路径。这些突出路线的位置与心房中各种不同束的位置重合。讨论了这些观察的可能推论。结论:根据与其他研究数据的比较,可以得出结论,在稳定的心律下,即使模型中不包括心房束,也可以通过匀速假设很好地估计房颤激发波的传播。总体几何形状似乎是激发传播的主要因素。

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