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小鼠房室结生理学评估

Assessment of atrioventricular nodal physiology in the mouse.

作者信息

VanderBrink B A, Link M S, Aronovitz M J, Saba S, Sloan S B, Homoud M K, Estes III N A, Wang P J

机构信息

New England Cardiac Arrhythmia Center, New England Medical Center, Boston, MA.

出版信息

J Interv Card Electrophysiol. 1999 Oct;3(3):207-12. doi: 10.1023/a:1009842105146.

Abstract

Transgenic mice are increasingly being utilized for understanding cardiac electrophysiologic abnormalities. However, little is known about the normal atrioventricular nodal and infraHisian physiology in the mouse because of the prior inability to record a His-bundle deflection. We present the first comprehensive examination of the murine atrioventricular nodal and His-Purkinje systems employing His-bundle recordings. Normal, healthy, male C57BL/6J mice (n = 48) underwent an in vivo electrophysiology study using a 2 F octapolar electrode catheter. Effective refractory periods were determined during premature atrial and ventricular stimulation. The PR interval measured 44 +/- 6 ms with a mean sinus cycle length of 185 +/- 42 ms. Baseline AH intervals were 36 +/- 5 ms and HV intervals were 10 +/- 2 ms. At a pacing cycle length of 140 ms the atrioventricular nodal effective refractory period (AVNERP) and atrial effective refractory period (AERP) were 86 +/- 19 ms and 57 +/- 17 ms, respectively. The mean AV Wenckebach and 2:1 paced cycle length were 103 +/- 14 ms and 84 +/- 13 ms, respectively. Premature atrial stimulation curves were asymptotic without discontinuity. A subset of nine mice was studied after administration of isoproterenol. The sinus cycle length, AVNERP and AERP decreased significantly from baseline measurements. This method establishes a practical and feasible technique to record in vivo His-bundle electrograms in the mouse to assess atrioventricular nodal and infraHisian physiology. Use of this model will allow for the examination of abnormalities of atrioventricular nodal and infraHisian conduction in transgenic murine models.

摘要

转基因小鼠越来越多地被用于了解心脏电生理异常。然而,由于此前无法记录希氏束偏转,对小鼠正常房室结和希氏束下生理情况了解甚少。我们首次采用希氏束记录对小鼠房室结和希氏 - 浦肯野系统进行了全面检查。正常、健康的雄性C57BL / 6J小鼠(n = 48)使用2F八极电极导管进行了体内电生理研究。在房性和室性早搏刺激期间测定有效不应期。PR间期为44±6毫秒,平均窦性周期长度为185±42毫秒。基线AH间期为36±5毫秒,HV间期为10±2毫秒。在起搏周期长度为140毫秒时,房室结有效不应期(AVNERP)和心房有效不应期(AERP)分别为86±19毫秒和57±17毫秒。平均房室文氏周期和2:1起搏周期长度分别为103±14毫秒和84±13毫秒。房性早搏刺激曲线呈渐近性且无间断。九只小鼠的一个亚组在给予异丙肾上腺素后进行了研究。窦性周期长度、AVNERP和AERP较基线测量值显著降低。该方法建立了一种实用可行的技术,用于在小鼠体内记录希氏束电图,以评估房室结和希氏束下生理情况。使用该模型将有助于检查转基因小鼠模型中的房室结和希氏束下传导异常。

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