电生理学
普鲁卡因胺
医学
奎尼丁
心脏电生理学
耐火期
心脏传导系统
临床电生理
体内
有效耐火期
内科学
心脏病学
房室结
窦性心动过缓
刺激
麻醉
药理学
心动过缓
心电图
心率
生物
心动过速
血压
生物技术
作者
Charles I. Berul,Mark Aronovitz,Paul J. Wang,Michael E. Mendelsohn
出处
期刊:Circulation
[Ovid Technologies (Wolters Kluwer)]
日期:1996-11-15
卷期号:94 (10): 2641-2648
被引量:226
标识
DOI:10.1161/01.cir.94.10.2641
摘要
Background This report describes a novel in vivo mouse epicardial cardiac electrophysiology study based on clinical protocols used to evaluate cardiac conduction in human patients. The technique allows extensive electrophysiological evaluation, including the response to pacing, programmed stimulation, and pharmacological agents. Methods and Results Surface six-lead ECG data from 18 C57BL/6J mice are presented. Normal cardiac conduction properties for 14 of 18 mice that underwent the procedure are summarized, including determination of sinus node recovery times, AV conduction properties, and atrial, AV, and ventricular effective refractory periods. A subset of six mice was studied after the administration of either procainamide (n=3) or quinidine (n=3). All animals in the procainamide group developed either second-degree or complete AV block spontaneously. The sinus cycle length and refractory periods prolonged on procainamide or quinidine, but no tachyarrhythmias could be induced with atrial or ventricular programmed stimulation. Conclusions This mouse electrophysiology method allows rapid assessment of the conduction properties of the murine heart. The ability to analyze cardiac conduction in normal and transgenic mice provides a powerful tool for examining molecular electrophysiological mechanisms in normal physiology and disease states.
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