Macchi Emilio, Baruffi Silvana, Rossi Stefano, Miragoli Michele, Bertuzzi Andrea, Musso Ezio, Corradi Domenico, Di Gregorio Franco
Dipartimento di Biologia Evolutiva e Funzionale, Sezione Fisiologia, Italy.
J Electrocardiol. 2004;37 Suppl:135-43. doi: 10.1016/j.jelectrocard.2004.08.038.
Stimulation of myocardium by either a native pacemaker or an artificial stimulus requires the initiation of a self-propagating wave of depolarization originating from the site of initial activation. In the present study we perform artificial stimulation at a site of focal discharge with the aim to compare the two mechanisms of impulse formation. High resolution epicardial mapping in senescent rat hearts provided examples of focal discharge during sinus rhythm at a single epicardial breakthrough (BKT) point emerging from an isolated Purkinje-ventricular muscle junction (PMJ) site. Stimulation was also performed at the same BKT point and potential distributions recorded during spontaneous and artificial stimulation were compared. During excitation latency, the negative potential pattern was elongated perpendicularly to fiber direction at both pacing and BKT point, in agreement with virtual cathode membrane polarization predicted by the bidomain model during point stimulation. During impulse initiation, activation wave fronts were initially circular around pacing site or BKT point and then elongated along local fiber direction. The similarity between impulse initiation during focal discharge and point stimulation in cardiac muscle suggests that high resolution pace mapping studies can help to elucidate the mechanism of abnormal impulse formation.
由天然起搏器或人工刺激对心肌的刺激需要启动一个源自初始激活部位的自我传播的去极化波。在本研究中,我们在局灶性放电部位进行人工刺激,目的是比较两种冲动形成机制。对衰老大鼠心脏进行高分辨率心外膜标测,提供了窦性心律期间在一个从孤立的浦肯野 - 心室肌连接(PMJ)部位出现的单个心外膜突破(BKT)点处局灶性放电的实例。还在同一BKT点进行刺激,并比较了自发刺激和人工刺激期间记录的电位分布。在兴奋潜伏期,在起搏点和BKT点,负电位模式均垂直于纤维方向拉长,这与双域模型预测的点刺激期间的虚拟阴极膜极化一致。在冲动起始期间,激活波前最初在起搏部位或BKT点周围呈圆形,然后沿局部纤维方向拉长。心肌局灶性放电期间的冲动起始与点刺激之间的相似性表明,高分辨率起搏标测研究有助于阐明异常冲动形成的机制。