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Morphological and electrophysiological study on the inferior nodal extension and transitional cellular band in the rabbit atrioventricular junctional area

机译:兔房室交界区下节延伸和过渡细胞带的形态和电生理研究

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Background Advances in catheter ablation procedures for the treatment of supraventricular arrhythmias have created the need to understand better the morphological and electrophysiological characteristics of the inferior nodal extension (INE) and transitional cellular band (TCB) in the atrioventricular (AV) junctional area. Methods Firstly, we observed the histological features of 10 rabbit AV junctional areas by serial sections under light microscopy. Then we recorded the action potentials (APs) of transitional cells (TCs) in the INE, TCBs, AV node, and ordinary right atrial myocytes from the AV junctional area of 30 rabbits using standard intracellular microeletrode techniques. Results Under light microscopy, the INE appeared to be mostly composed of transitional cells linking upward to the AV node. Four smaller TCBs originated in the orifice of the coronary sinus, the region between the septal leaflet of the tricuspid valve and the coronary sinus, the inferior wall of the left atrium, and the superior interatrial septum, respectively, all linking to the INE or the AV node. Compared with ordinary atrial myocytes, the AP of the TCs in both the INE and the TCBs had a spontaneous phase 4 depolarization (not present in ordinary atrial myocytes), with a less negative maximum diastolic potential, a smaller amplitude, a slower maximum velocity of AP upstroke, and a longer action potential duration at 50% repolarization (APD_(50)) and at 30% repolarization (APD_(30)). The AP characteristics of these TCs were similar to those of the AV node, except that the velocities of the phase 4 spontaneous depolarization were slower and their action potential durations at 90% repotarization (APD_(90)) were shorter. Moreover, APD_(50) and APD_(30) of the TCs of the TCBs were shorter than in the case of TCs of the AV node. Conclusions The TCs of the INE and TCBs are similar to slow response automatic cells. They provide a substrate for slow pathway conduction. In addition, repolarization heterogeneity exists in the AV junctional area.
机译:背景技术用于治疗室上性心律失常的导管消融程序的进步已经引起了对更好地了解房室(AV)交界处下节延伸(INE)和过渡性细胞带(TCB)的形态和电生理特征的需要。方法首先,通过光学显微镜下连续切片观察10只兔房室交界处的组织学特征。然后,我们使用标准的细胞内微电极技术记录了30只兔的AV交界处INE,TCB,AV节点和普通右房心肌细胞中过渡细胞(TC)的动作电位(AP)。结果在光学显微镜下,INE似乎主要由向上连接至AV节点的过渡细胞组成。四个较小的TCB分别起源于INE或NET,分别起源于冠状窦口,三尖瓣间隔小叶和冠状窦之间的区域,左心房下壁和上房间隔。 AV节点。与普通心房肌细胞相比,INE和TCB中TC的AP具有自发的4期去极化作用(普通心房肌细胞中不存在),最大舒张电位负值较小,振幅较小,最大速度较慢。 AP向上冲程,在50%复极化(APD_(50))和30%复极化(APD_(30))下动作电位持续时间更长。这些TC的AP特性与AV节点的AP特性相似,不同之处在于第4相自发去极化的速度较慢,并且在90%复极化时的动作电位持续时间较短(APD_(90))。而且,与AV节点的TC的情况相比,TCB的TC的APD_(50)和APD_(30)更短。结论INE和TCB的TC与慢反应自动细胞相似。它们为缓慢的通路传导提供了底物。此外,AV连接区存在复极化异质性。

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