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缺血边缘区解耦联对触发活动的调制:一项类似1b期条件的模型研究

Modulation of triggered activity by uncoupling in the ischemic border. A model study with phase 1b-like conditions.

作者信息

Pollard Andrew E, Cascio Wayne E, Fast Vladimir G, Knisley Stephen B

机构信息

Department of Biomedical Engineering, Cardiac Rhythm Management Laboratory, University of Alabama at Bermingham, Volker Hall B140 1670 University Blvd., Birmingham, AL 35294, USA.

出版信息

Cardiovasc Res. 2002 Dec;56(3):381-92. doi: 10.1016/s0008-6363(02)00598-9.

Abstract

OBJECTIVE

Triggered beats during regional ischemia may depend upon the electrical source and sink charge interactions between adjacent regions of normal and ischemic cardiac tissue that are partly controlled by electrical coupling.

METHODS

To study these relationships, we modified parameters in the Luo-Rudy dynamic membrane equations to reflect physiologic conditions associated with phase 1b arrhythmias. Superthreshold delayed afterdepolarizations (DADs) formed after pacing. Coupling contributions were then examined using: (i) a single phase 1b myocyte connected via a variable resistance to a single normal myocyte, and (ii) a multicellular fiber with a 1-cm segment of phase 1b myocytes connected to a 1-cm normal segment having resistance changes that were confined to the ischemic segment. Integration of ionic, capacitive and coupling currents during DAD initiation allowed charge quantification.

RESULTS

In cell pairs, phase 1b myocyte DADs were suppressed at resistances where normal myocyte pacing resulted in phase 1b myocyte excitation. Coupling charge requirements limited capacitive charging in the phase 1b myocyte, which occurred in combination with diastolic hyperpolarization that shifted transmembrane potential from threshold. In multicellular fiber simulations, DADs were suppressed with strong coupling in the phase 1b segment. Moderate uncoupling of that segment allowed superthreshold DAD formation away from the border that initiated action potential propagation in the normal segment. With severe uncoupling, propagation failed at the border.

CONCLUSIONS

These findings support the clinical and experimental observation that intermediate uncoupling is an important contributor to phase 1b arrhythmogenesis.

摘要

目的

局部缺血期间的触发搏动可能取决于正常和缺血性心脏组织相邻区域之间的电源和电穴电荷相互作用,这种相互作用部分受电耦合控制。

方法

为研究这些关系,我们修改了Luo-Rudy动态膜方程中的参数,以反映与1b期心律失常相关的生理状况。起搏后形成超阈值延迟后除极(DADs)。然后使用以下方法检查耦合作用:(i)单个1b期心肌细胞通过可变电阻与单个正常心肌细胞相连,以及(ii)一个多细胞纤维,其中1cm长的1b期心肌细胞段与1cm长的正常段相连,电阻变化仅限于缺血段。在DAD起始期间对离子电流、电容电流和耦合电流进行积分可实现电荷量化。

结果

在细胞对中,当正常心肌细胞起搏导致1b期心肌细胞兴奋时,1b期心肌细胞的DADs在一定电阻下受到抑制。耦合电荷需求限制了1b期心肌细胞中的电容性充电,这与舒张期超极化相结合,使跨膜电位偏离阈值。在多细胞纤维模拟中,1b期段的强耦合抑制了DADs。该段的中度解耦允许在远离正常段中引发动作电位传播的边界处形成超阈值DADs。在严重解耦时,边界处的传播失败。

结论

这些发现支持了临床和实验观察结果,即中度解耦是1b期心律失常发生的重要因素。

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