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首页> 外文期刊>Journal of cardiovascular electrophysiology >Myocardial Bundles with Slow Conduction Properties are Present on the Left Interventricular Septal Surface of Normal Human Hearts.
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Myocardial Bundles with Slow Conduction Properties are Present on the Left Interventricular Septal Surface of Normal Human Hearts.

机译:正常人心脏的左心室间隔表面存在传导性较慢的心肌束。

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Systolic and Diastolic Potentials in LV Septum. Introduction: The aim of this study was to examine the electrophysiologic characteristics of the normal left interventricular septum (LIVS). Methods and Results: We explored the LIVS in search of endocardial potentials following ventricular electrograms during sinus rhythm in 28 patients without structural heart disease. In all patients, low-frequency (mean amplitude: 0.81 +/- 0.33 mV) systolic potentials (LA1) were detected in a basal-to-apical activation sequence (earliest to latest QRS-LA1 interval: 93.3 +/- 10.8 ms to 127.1 +/- 16.6 ms). Programmed stimulation demonstrated decremental conduction properties, and the effective refractory period of the tissue between the ventricular electrogram and LA1 at baseline (376.7 +/- 48.8 ms) was significantly prolonged by disopyramide (421.3 +/- 54.1 ms, P < 0.05 vs baseline). In 21 patients (75%), diastolic potentials (LA2) morphologically similar to LA1 (mean amplitude: 0.52 +/- 0.17 mV) were detected in an apical-to-basal activation sequence (earliest to latest QRS-LA2 interval: 368.9 +/- 32.4 ms to 440.7 +/- 45.8 ms). Para-Hisian pacing with capture of the His bundle showed shorter S-LA1 and S-LA2 intervals compared to the beats without His-bundle capture but with ventricular capture (156.3 +/- 11.2 ms vs 183.2 +/- 12.3 ms, and 385.7 +/- 21.6 ms vs 397.4 +/- 23.4 ms, respectively, P < 0.0001). At the same rate, the LA1-LA2 interval was significantly shorter during right ventricular apical than atrial overdrive pacing (220.4 +/- 23.1 ms vs 261.4 +/- 30.7 ms, P < 0.0001). Conclusion: Unique myocardial bundles with slow conduction properties and various electrical connections with the specialized conduction system may exist in the LIVS of normal human hearts. (J Cardiovasc Electrophysiol, Vol. 15, pp. 1-9, September 2004)
机译:左室间隔的收缩压和舒张压。简介:这项研究的目的是检查正常的左室间隔(LIVS)的电生理特性。方法和结果:我们探索了LIVS,以研究28例无结构性心脏病的窦性心律患者心电图在心电图检查后的心内膜电位。在所有患者中,从基底到根尖的激活序列(最早的最新QRS-LA1间隔:93.3 +/- 10.8 ms至)均检测到了低频(平均振幅:0.81 +/- 0.33 mV)收缩压(LA1) 127.1 +/- 16.6毫秒)。程序刺激显示出递减的传导特性,二吡yr酰胺显着延长了基线时心电图和LA1之间组织的有效不应期(376.7 +/- 48.8 ms)(421.3 +/- 54.1 ms,P <0.05 vs基线) 。在21例患者中(75%),在根尖到基底的激活序列中发现了形态上与LA1形态相似的舒张电位(LA2)(平均幅度:0.52 +/- 0.17 mV)(最早的QRS-LA2间隔为368.9 + /-32.4毫秒至440.7 +/- 45.8毫秒)。与没有His束捕获但有心室捕获的搏动相比,带有His束捕获的准Hisian起搏显示较短的S-LA1和S-LA2间隔(156.3 +/- 11.2 ms vs 183.2 +/- 12.3 ms和385.7 +/- 21.6毫秒vs 397.4 +/- 23.4毫秒,P <0.0001)。以相同的速率,右心室心尖的LA1-LA2间隔明显比心房超速起搏短(220.4 +/- 23.1 ms vs 261.4 +/- 30.7 ms,P <0.0001)。结论:正常人心脏的LIVS中可能存在具有慢传导特性的独特心肌束,并且与专门传导系统的各种电连接。 (J Cardiovasc Electrophysiol,Vol.15,pp.1-9,2004年9月)

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