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西苯唑啉对清醒山羊持续性心房颤动进行药物转复的空间相关性分析

Spatial correlation analysis of the pharmacological conversion of sustained atrial fibrillation in conscious goats by cibenzoline.

作者信息

Hoekstra B P, Diks C G, Allessie M A, DeGoede J

机构信息

Department of Radiology, Leiden University Medical Centre, Leiden, The Netherlands.

出版信息

Arch Physiol Biochem. 2000 Oct;108(4):332-48. doi: 10.1076/apab.108.4.332.4299.

Abstract

The nonlinear spatial redundancy and the linear spatial correlation function were used to investigate to what extent non-linearity was involved in the coupling of atrial regions and how organization in activation patterns of sustained atrial fibrillation (AF) had been modified by administration of the class IC agent cibenzoline in the experimental model of sustained AF in instrumented conscious goats. Electrograms were measured in five goats during sustained AF and when the fibrillation interval had been prolonged to about 25%, 50% and 85% (CIB25, CIB50, CIB85) with respect to control. The nonlinear association length and linear correlation length were estimated along the principal axes of two-dimensional correlation maps estimated from the spatial redundancy and the spatial correlation function, respectively. The estimated short axis association length in the right atrium increased already shortly after the start of infusion (CIB25, +61%), and remained significantly different from control during the experiment, including the effects of non-simultaneous interaction. At CIB85 the association length had almost become twice as long with respect to control (increase from 16 to 29 mm, 89%), while in the left atrium changes were less pronounced (increase from 9 to 12 mm, +32%). The linearized association length which was estimated using multivariate surrogate data increased more gradually and was less sensitive to changes in spatial organization. The results of the spatial correlation analysis suggest that the drug-induced nonlinearity in the spatio-temporal dynamics of sustained AF is related to activation patterns which are characterized by extended uniformly propagating fibrillation wavefronts (AF type I). We conclude that cibenzoline enhanced the spatial organization of sustained AF associated with a transition from type II to type I AF activation patterns. This may destabilize the perpetuation of AF since an increase in association length is equivalent to a reduction of atrial tissue mass available to support reentrant circuits. The results are consistent with the hypothesis that larger association lengths result from fewer and larger reentrant circuits. It is argued that effects of diminished curvature of fibrillation wavefronts are anti-arrhythmic under conditions of suppressed excitability imposed by cibenzoline. Termination of AF may be mediated by a mechanism resembling a bifurcation of the dynamics which sets in when the ends of fractionated wavefronts cannot sufficiently curve anymore to maintain a positive balance of newly generated wavelets needed to sustain AF.

摘要

利用非线性空间冗余和线性空间相关函数,研究心房区域耦合中非线性的参与程度,以及在植入仪器的清醒山羊持续性房颤(AF)实验模型中,ⅠC类药物西苯唑啉的给药如何改变持续性房颤激活模式的组织情况。在五只山羊持续性房颤期间以及房颤间期相对于对照延长至约25%、50%和85%(CIB25、CIB50、CIB85)时记录心电图。分别根据空间冗余和空间相关函数估计的二维相关图的主轴,估算非线性关联长度和线性相关长度。右心房估计的短轴关联长度在输注开始后不久就已增加(CIB25,增加61%),并且在实验期间与对照相比仍有显著差异,包括非同步相互作用的影响。在CIB85时,关联长度相对于对照几乎增加了一倍(从16毫米增加到29毫米,增加89%),而左心房的变化则不太明显(从9毫米增加到12毫米,增加32%)。使用多元替代数据估计的线性化关联长度增加更为缓慢,并且对空间组织变化的敏感性较低。空间相关分析结果表明,药物诱导的持续性房颤时空动力学中的非线性与以扩展的均匀传播房颤波前为特征的激活模式有关(Ⅰ型房颤)。我们得出结论,西苯唑啉增强了与从Ⅱ型到Ⅰ型房颤激活模式转变相关的持续性房颤的空间组织。这可能会破坏房颤的持续存在,因为关联长度的增加相当于可用于支持折返环路的心房组织质量的减少。结果与以下假设一致,即较大的关联长度是由更少且更大的折返环路导致的。有人认为,在西苯唑啉引起的兴奋性抑制条件下,房颤波前曲率减小的作用是抗心律失常的。房颤的终止可能由一种类似于动力学分岔的机制介导,当碎裂波前的末端不能再充分弯曲以维持维持房颤所需的新产生小波的正平衡时,这种机制就会出现。

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