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本文引用的文献

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Periods of highly synchronous, non-reentrant endocardial activation cycles occur during long-duration ventricular fibrillation.在长时间心室颤动期间,会出现高度同步、非折返性心内膜激活周期。
J Cardiovasc Electrophysiol. 2010 Nov;21(11):1266-73. doi: 10.1111/j.1540-8167.2010.01803.x.
2
Detrended fluctuation analysis predicts successful defibrillation for out-of-hospital ventricular fibrillation cardiac arrest.去趋势波动分析可预测院外室颤性心脏骤停除颤的成功。
Resuscitation. 2010 Mar;81(3):297-301. doi: 10.1016/j.resuscitation.2009.12.003. Epub 2010 Jan 13.
3
Increased cycle length during long-duration ventricular fibrillation is caused by decreased upstroke velocity as well as prolonged refractoriness.长时间心室颤动期间周期长度增加是由上升速度降低以及不应期延长所致。
Heart Rhythm. 2009 Mar;6(3):378-84. doi: 10.1016/j.hrthm.2008.12.016. Epub 2008 Dec 13.
4
Both Purkinje cells and left ventricular posteroseptal reentry contribute to the maintenance of ventricular fibrillation in open-chest dogs and swine: effects of catheter ablation and the ventricular cut-and-sew operation.浦肯野细胞和左心室后间隔折返均有助于开胸犬和猪心室颤动的维持:导管消融和心室切割缝合手术的效果
Circ J. 2008 Jul;72(7):1185-92. doi: 10.1253/circj.72.1185.
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Functionally distinct sodium channels in ventricular epicardial and endocardial cells contribute to a greater sensitivity of the epicardium to electrical depression.心室心外膜和心内膜细胞中功能不同的钠通道导致心外膜对电抑制更敏感。
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Activation patterns of Purkinje fibers during long-duration ventricular fibrillation in an isolated canine heart model.在离体犬心脏模型中长时间心室颤动期间浦肯野纤维的激活模式。
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Three distinct phases of VF during global ischemia in the isolated blood-perfused pig heart.在离体血液灌注猪心脏的全心缺血期间,室颤存在三个不同阶段。
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8
Role of the posterior papillary muscle and purkinje potentials in the mechanism of ventricular fibrillation in open chest dogs and Swine: effects of catheter ablation.后乳头肌和浦肯野电位在开胸犬和猪心室颤动机制中的作用:导管消融的影响
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Quantification of activation patterns during ventricular fibrillation in open-chest porcine left ventricle and septum.开胸猪左心室和室间隔心室颤动期间激活模式的量化
Heart Rhythm. 2005 Jul;2(7):720-8. doi: 10.1016/j.hrthm.2005.03.025.

在猪的长时间心室颤动期间激活模式的演变。

Evolution of activation patterns during long-duration ventricular fibrillation in pigs.

机构信息

Peking Union Medical College Hospital, Beijing, Peoples Republic of China.

出版信息

Am J Physiol Heart Circ Physiol. 2012 Feb 15;302(4):H992-H1002. doi: 10.1152/ajpheart.00419.2011. Epub 2011 Dec 16.

DOI:10.1152/ajpheart.00419.2011
PMID:22180655
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3322740/
Abstract

Quantitative analysis has demonstrated five temporal stages of activation during the first 10 min of ventricular fibrillation (VF) in dogs. To determine whether these stages exist in another species, we applied the same analysis to the first 10 min of VF recorded in vivo from two 504-electrode arrays, one each on left anterior and posterior ventricular epicardium in six anesthetized pigs. The following descriptors were continuously quantified: 1) number of wavefronts, 2) wavefront fractionations, 3) wavefront collisions, 4) repeatability, 5) multiplicity index, 6) wavefront conduction velocity, 7) activation rate, 8) mean area activated by the wavefronts, 9) negative peak rate of voltage change, 10) incidence of breakthrough/foci, 11) incidence of block, and 12) incidence of reentry. Cluster analysis of these descriptors divided VF into four stages (stages i-iv). The values of most descriptors increased during stage i (1-22 s after VF induction), changed quickly to values indicating greater organization during stage ii (23-39 s), decreased steadily during stage iii (40-187 s), and remained relatively unchanged during stage iv (188-600 s). The epicardium still activated during stage iv instead of becoming silent as in dogs. In conclusion, during the first 10 min, VF activation can be divided into four stages in pigs instead of five stages as in dogs. Following a 16-s period during the first minute of VF when activation became more organized, all parameters exhibited progressive decreased organization. Further studies are warranted to determine whether these changes, particularly the increased organization of stage ii, have clinical consequences, such as alteration in defibrillation efficacy.

摘要

定量分析表明,在犬心室颤动(VF)的前 10 分钟内,存在五个激活阶段。为了确定这些阶段是否存在于其他物种中,我们将相同的分析应用于从两个 504 电极阵列记录的 VF 的前 10 分钟,每个电极阵列分别位于麻醉猪的左前和左后心室心外膜上。连续定量分析了以下描述符:1)波阵面数量,2)波阵面分裂,3)波阵面碰撞,4)可重复性,5)多发性指数,6)波阵面传导速度,7)激活率,8)波阵面激活的平均面积,9)电压变化的负峰率,10)突破/焦点的发生率,11)阻滞的发生率和 12)折返的发生率。对这些描述符的聚类分析将 VF 分为四个阶段(阶段 i-iv)。在阶段 i(VF 诱导后 1-22 秒)期间,大多数描述符的值增加,在阶段 ii(23-39 秒)期间迅速变为指示更大组织性的值,在阶段 iii(40-187 秒)期间稳定下降,在阶段 iv(188-600 秒)期间保持相对不变。与犬不同的是,心外膜在阶段 iv 期间仍在激活,而不是变得沉默。总之,在猪的前 10 分钟内,VF 激活可以分为四个阶段,而不是像犬一样分为五个阶段。在 VF 最初 1 分钟的 16 秒期间,激活变得更加有组织后,所有参数都表现出逐渐降低的组织性。需要进一步研究以确定这些变化,特别是第二阶段的组织增加,是否具有临床意义,例如改变除颤效果。