Franz M R, Burkhoff D, Yue D T, Sagawa K
Division of Cardiology, Johns Hopkins Medical Institutions, Baltimore, Maryland.
Cardiovasc Res. 1989 Mar;23(3):213-23. doi: 10.1093/cvr/23.3.213.
Stretch of excised myocardial tissue causes electrophysiological and potentially arrhythmogenic changes in transmembrane action potentials but corresponding data of the intact mammalian heart are lacking. The effects of increases in ventricular volume and pressure on epicardial monophasic action potentials were therefore investigated in isolated, cross circulated and in situ canine hearts. In seven isolated hearts, increases in ventricular volume and pressure resulted in (1) a linearly related decrease in action potential amplitude (r = 0.988; slope = 0.41% amplitude.ml-1; volume intercept = 17.6 ml), mainly due to a decrease in maximum diastolic potential; (2) a decrease in action potential plateau duration (at 20% repolarisation) by 19 (SD 8)%; and (3) appearance of early afterdepolarizations, reaching up to 18% of total action potential amplitude. Afterdepolarizations occurred only when ventricular outflow was obstructed at end diastole but not at end systole. In eight in situ hearts, increase in left intraventricular pressure produced by transient occlusions of the ascending aorta was also accompanied by decrease in maximum diastolic potential and action potential plateau duration, and by appearance of early afterdepolarizations. In both isolated and in situ intact ventricles, the loading induced electrophysiological changes were associated with occurrence of ectopic ventricular beats. These data show that mechanical overload produces significant electrophysiological changes in the intact canine ventricle which may lead to arrhythmia.
切除的心肌组织拉伸会导致跨膜动作电位发生电生理变化,并可能引发致心律失常的改变,但完整哺乳动物心脏的相应数据尚缺。因此,研究了心室容积和压力增加对离体、交叉循环和原位犬心的心外膜单相动作电位的影响。在7个离体心脏中,心室容积和压力增加导致:(1)动作电位幅度呈线性相关下降(r = 0.988;斜率 = 0.41%幅度·ml⁻¹;容积截距 = 17.6 ml),主要是由于最大舒张电位降低;(2)动作电位平台期持续时间(在复极化20%时)下降19(标准差8)%;(3)出现早期后去极化,幅度可达总动作电位幅度的18%。后去极化仅在舒张末期心室流出道受阻时出现,而在收缩末期未出现。在8个原位心脏中,升主动脉短暂闭塞导致左心室内压升高,也伴随着最大舒张电位和动作电位平台期持续时间的下降,以及早期后去极化的出现。在离体和原位完整心室中,负荷诱导的电生理变化均与室性异位搏动的发生有关。这些数据表明,机械性超负荷会使完整犬心室发生显著的电生理变化,可能导致心律失常。