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本文引用的文献

1
Global burden of atrial fibrillation in developed and developing nations.发达国家和发展中国家的心房颤动全球负担。
Glob Heart. 2014 Mar;9(1):113-9. doi: 10.1016/j.gheart.2014.01.004.
2
Driver domains in persistent atrial fibrillation.持续性心房颤动中的驱动域。
Circulation. 2014 Aug 12;130(7):530-8. doi: 10.1161/CIRCULATIONAHA.113.005421. Epub 2014 Jul 15.
3
Initial independent outcomes from focal impulse and rotor modulation ablation for atrial fibrillation: multicenter FIRM registry.房颤局灶冲动与转子调制消融的初步独立结果:多中心FIRM注册研究
J Cardiovasc Electrophysiol. 2014 Sep;25(9):921-929. doi: 10.1111/jce.12474. Epub 2014 Jul 23.
4
Ablation of multiwavelet re-entry guided by circuit-density and distribution: maximizing the probability of circuit annihilation.多波导折返的消融:由电路密度和分布引导,最大化电路消除的概率。
Circ Arrhythm Electrophysiol. 2013 Dec;6(6):1229-35. doi: 10.1161/CIRCEP.113.000759. Epub 2013 Sep 15.
5
Prevalence, characteristics, mapping, and catheter ablation of potential rotors in nonparoxysmal atrial fibrillation.非阵发性心房颤动中潜在转子的流行情况、特征、定位和导管消融。
Circ Arrhythm Electrophysiol. 2013 Oct;6(5):851-8. doi: 10.1161/CIRCEP.113.000318. Epub 2013 Aug 27.
6
Theoretical considerations for mapping activation in human cardiac fibrillation.人类心房颤动中激活映射的理论考虑。
Chaos. 2013 Jun;23(2):023113. doi: 10.1063/1.4807098.
7
Rotors and the dynamics of cardiac fibrillation.转子和心脏纤维性颤动的动力学。
Circ Res. 2013 Mar 1;112(5):849-62. doi: 10.1161/CIRCRESAHA.111.300158.
8
Bipolar electrogram shannon entropy at sites of rotational activation: implications for ablation of atrial fibrillation.双极电图香农熵在旋转激活部位:对心房颤动消融的影响。
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9
Acute termination of human atrial fibrillation by identification and catheter ablation of localized rotors and sources: first multicenter experience of focal impulse and rotor modulation (FIRM) ablation.经鉴定和导管消融局部转子和病灶实现人类心房颤动的急性终止:聚焦脉冲和转子调制(FIRM)消融的首次多中心经验。
J Cardiovasc Electrophysiol. 2012 Dec;23(12):1277-85. doi: 10.1111/jce.12000. Epub 2012 Nov 6.
10
Computational mapping identifies localized mechanisms for ablation of atrial fibrillation.计算标测定位消融治疗心房颤动的局部机制。
PLoS One. 2012;7(9):e46034. doi: 10.1371/journal.pone.0046034. Epub 2012 Sep 26.

相位同步揭示了人类心房颤动中的组织架构。

Phase synchrony reveals organization in human atrial fibrillation.

作者信息

Vidmar David, Narayan Sanjiv M, Rappel Wouter-Jan

机构信息

Department of Physics, University of California, San Diego, California; and.

Department of Cardiovascular Medicine, Stanford University, Palo Alto, California.

出版信息

Am J Physiol Heart Circ Physiol. 2015 Dec 15;309(12):H2118-26. doi: 10.1152/ajpheart.00407.2015. Epub 2015 Oct 16.

DOI:10.1152/ajpheart.00407.2015
PMID:26475585
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4698428/
Abstract

It remains unclear if human atrial fibrillation (AF) is spatially nonhierarchical or exhibits a hierarchy of organization sustained by sources. We utilize activation times obtained at discrete locations during AF to compute the phase synchrony between tissue regions, to examine underlying spatial dynamics throughout both atria. We construct a binary synchronization network and show that this network can accurately define regions of coherence in coarse-grained in silico data. Specifically, domains controlled by spiral waves exhibit regions of high phase synchrony. We then apply this analysis to clinical data from patients experiencing cardiac arrhythmias using multielectrode catheters to simultaneously record from a majority of both atria. We show that pharmaceutical intervention with ibutilide organizes activation by increasing the size of the synchronized domain in AF and quantify the increase in temporal organization when arrhythmia changes from fibrillation to tachycardia. Finally, in recordings from 24 patients in AF we show that the level of synchrony is spatially broad with some patients showing large spatially contiguous regions of synchronization, while in others synchrony is localized to small pockets. Using computer simulations, we show that this distribution is inconsistent with distributions obtained from simulations that mimic multiwavelet reentry but is consistent with mechanisms in which one or more spatially conserved spiral waves is surrounded by tissue in which activation is disorganized.

摘要

目前尚不清楚人类心房颤动(AF)在空间上是否是非分层的,或者是否表现出由源维持的组织层次结构。我们利用房颤期间在离散位置获得的激活时间来计算组织区域之间的相位同步,以研究整个心房的潜在空间动态。我们构建了一个二元同步网络,并表明该网络可以准确地定义粗粒度计算机模拟数据中的相干区域。具体而言,由螺旋波控制的区域表现出高相位同步区域。然后,我们使用多电极导管对大多数心房同时进行记录,将这种分析应用于心律失常患者的临床数据。我们表明,使用伊布利特进行药物干预可通过增加房颤中同步域的大小来组织激活,并量化心律失常从颤动转变为心动过速时时间组织的增加。最后,在24例房颤患者的记录中,我们表明同步水平在空间上很广泛,一些患者表现出大面积的空间连续同步区域,而另一些患者的同步则局限于小区域。通过计算机模拟,我们表明这种分布与模拟多小波折返获得的分布不一致,但与一个或多个空间保守螺旋波被激活无序的组织包围的机制一致。