Zhang Youhua, Bharati Saroja, Mowrey Kent A, Mazgalev Todor N
Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.
Circulation. 2003 Feb 25;107(7):1059-65. doi: 10.1161/01.cir.0000051464.52601.f4.
Traditional tools to study dual-pathway atrioventricular nodal (AVN) electrophysiology are not applicable in subjects with permanent atrial fibrillation (AF). The presence of fast-pathway (FP) and slow-pathway (SP) wavefronts and their possible modification remain uncertain in this condition. We demonstrated previously that His electrogram (HE) alternans can determine whether the FP or the SP reaches the His bundle on a beat-by-beat basis. We have now applied this novel index to monitor dual-pathway conduction and the effects of SP modification during AF.
In 12 rabbit AVN preparations, HE alternans were confirmed during a standard A(1)A(2) pacing protocol. During AF, in 9 of the 12 hearts, HE alternans indicated the presence of dual pathways. Successful SP modification guided by the HE alternans eliminated the SP, resulting in a predominantly FP conduction during AF in all hearts. This increased the average His-His interval (204+/-14 versus 276+/-51 ms, P<0.001). Morphological studies revealed that SP modification damaged only the posterior extension of the AVN.
We have demonstrated for the first time in rabbits that HE alternans permit "visualization" of dual-pathway electrophysiology and confirmed the presence of both FP and SP wavefronts during AF. This novel index has been used in a selective SP ablation that resulted in a significant slowing of the ventricular rate. HE alternans provide a new insight into the mechanisms of AVN conduction and could guide AVN modification for ventricular rate control in AF clinically.
用于研究双径路房室结(AVN)电生理的传统工具不适用于永久性心房颤动(AF)患者。在这种情况下,快径路(FP)和慢径路(SP)波前的存在及其可能的改变仍不确定。我们之前证明,希氏束电图(HE)交替现象可以逐搏确定是FP还是SP到达希氏束。我们现在已应用这一新指标来监测AF期间的双径路传导及SP改良的效果。
在12个兔AVN标本中,在标准A(1)A(2)起搏方案期间证实有HE交替现象。在AF期间,12个心脏中有9个,HE交替现象表明存在双径路。由HE交替现象引导的成功的SP改良消除了SP,导致所有心脏在AF期间主要为FP传导。这增加了平均希氏束-希氏束间期(204±14对276±51毫秒,P<0.001)。形态学研究显示,SP改良仅损伤了AVN的后延伸部分。
我们首次在兔中证明,HE交替现象可使双径路电生理“可视化”,并证实了AF期间FP和SP波前均存在。这一新指标已用于选择性SP消融,导致心室率显著减慢。HE交替现象为AVN传导机制提供了新的见解,并可能在临床上指导AF时AVN改良以控制心室率。