在心房的过程中,心房动作潜力的交替作为心房的前体
Sanjiv M Narayan1, Frank Bode, Pamela L Karasik
1University of California and Veterans Affairs Medical Center, San Diego, Calif, USA.
Circulation
|October 9, 2002
概括
耳前转换为动通过动作潜能交替在地峡. 这种电动不稳定性,以速率不适应和导电阻塞为特征,可能会引发心房动,并证明静脉缩是合理的.
科学领域:
- 电子生理学 电子生理学
- 心脏节律失常症 心脏节律失常症
背景情况:
- 从典型的心房 (Afl) 到心房 (AF) 的转变驱动的机制尚未完全理解.
- 这项研究研究了动作潜能替代剂在Afl转换为AF中的作用.
研究的目的:
- 为了测试心房动通过心房动作潜力的交替变化而解体为心房动的假设.
- 为了确定Afl到AF过渡的基础的电生理机制.
主要方法:
- 单相动作潜力 (MAP) 从右心房峡和其他右心房位点记录在患有AFL的患者在过度节奏节奏.
- 节奏继续直到AF开始或达到160毫秒的周期长度.
- 分析了MAP持续时间和幅度的交替值,以及导电阻与AF发作的关系.
主要成果:
- 患有AF的患者在AF发病前的峡谷中显示了MAP持续时间和幅度的交替.
- 在过渡到AF的患者中观察到速度诱导的MAP持续时间交替和2:1导电阻塞.
- 在没有发展AF的患者中,MAP替代物发生的频率较低,节奏更快.
结论:
- 动作潜能持续时间速率在右心房支柱的不适应可能会导致替代物和导电阻,从而促进过渡到AF.
- 这些峡谷电生理学特性可能会通过波面分离实现AF启动.
- 这些研究结果支持地峡在AFL转换为AF中的作用,并可能解释地峡切除在预防AF复发方面的有效性.
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