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右心耳组织特异性折返模型。

A tissue-specific model of reentry in the right atrial appendage.

作者信息

Zhao Jichao, Trew Mark L, Legrice Ian J, Smaill Bruce H, Pullan Andrew J

机构信息

Bioengineering Institute, The University of Auckland, Auckland, New Zealand.

出版信息

J Cardiovasc Electrophysiol. 2009 Jun;20(6):675-84. doi: 10.1111/j.1540-8167.2008.01420.x. Epub 2009 Feb 2.

Abstract

INTRODUCTION

Atrial fibrillation is prevalent in the elderly and contributes to mortality in congestive heart failure. Development of computer models of atrial electrical activation that incorporate realistic structures provides a means of investigating the mechanisms that initiate and maintain reentrant atrial arrhythmia. As a step toward this, we have developed a model of the right atrial appendage (RAA) including detailed geometry of the pectinate muscles (PM) and crista terminalis (CT) with high spatial resolution, as well as complete fiber architecture.

METHODS AND RESULTS

Detailed structural images of a pig RAA were acquired using a semiautomated extended-volume imaging system. The generally accepted anisotropic ratio of 10:1 was adopted in the computer model. To deal with the regional action potential duration heterogeneity in the RAA, a Courtemanche cell model and a Luo-Rudy cell model were used for the CT and PM, respectively. Activation through the CT and PM network was adequately reproduced with acceptable accuracy using reduced-order computer models. Using a train of reducing cycle length stimuli applied to a CT/PM junction, we observed functional block both parallel with and perpendicular to the axis of the CT.

CONCLUSION

With stimulation from the CT at the junction of a PM, we conclude: (a) that conduction block within the CT is due to a reduced safety factor; and (b) that unidirectional block and reentry within the CT is due to its high anisotropy. Regional differences in effective refractive period do not explain the observed conduction block.

摘要

引言

心房颤动在老年人中很常见,并导致充血性心力衰竭患者死亡。开发包含真实结构的心房电激活计算机模型为研究引发和维持折返性房性心律失常的机制提供了一种方法。作为迈向这一目标的一步,我们开发了一个右心耳(RAA)模型,该模型包括梳状肌(PM)和终末嵴(CT)的详细几何结构,具有高空间分辨率,以及完整的纤维结构。

方法与结果

使用半自动扩展容积成像系统获取猪RAA的详细结构图像。计算机模型采用了普遍接受的10:1各向异性比率。为了处理RAA中区域动作电位持续时间的异质性,分别对CT和PM使用了Courtemanche细胞模型和Luo-Rudy细胞模型。使用降阶计算机模型以可接受的精度充分再现了通过CT和PM网络的激活。通过向CT/PM交界处施加一系列递减周期长度的刺激,我们观察到了与CT轴平行和垂直方向的功能性阻滞。

结论

在PM交界处受到CT刺激时,我们得出以下结论:(a)CT内的传导阻滞是由于安全系数降低;(b)CT内的单向阻滞和折返是由于其高各向异性。有效不应期的区域差异并不能解释观察到的传导阻滞。

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