Tan Alex Y, Chou Chung-Chuan, Zhou Shengmei, Nihei Motoki, Hwang Chun, Peter C Thomas, Fishbein Michael C, Chen Peng-Sheng
Division of Cardiology, Department of Medicine, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Am J Physiol Heart Circ Physiol. 2006 Jan;290(1):H312-22. doi: 10.1152/ajpheart.00369.2005. Epub 2005 Sep 9.
The importance of the ligament of Marshall (LOM) to rapid activations within the left superior pulmonary vein (LSPV) during atrial fibrillation (AF) remains poorly understood. We aimed to characterize the importance of electrical coupling between the LSPV with the left atrium (LA) and the LOM in the generation of high-frequency activations within this PV. We performed high-density mapping of the LSPV-LA-LOM junction in eight dogs, using 1,344 electrodes with a 1-mm resolution before and after posterior ostial ablation to diminish PV-LA electrical connections. A LOM potential was recordable up to 6.5 mm (SD 2.2) into the LSPV in all dogs during sinus rhythm (SR) and LA pacing. Functional LOM-LSPV electrical connections bypassing the PV-LA junction were present in five of eight dogs. Direct LOM-LSPV connections contributed to 46.5% (SD 16.0) of LSPV activations during AF, resulting in a greater propensity to develop focal activations (P < 0.05) and a higher activation rate during AF of LSPVs with direct LOM connections compared with those without (P < 0.03). Posterior LSPV ostial ablation without damaging the anterior wall or LOM slowed residual LA-PV conduction (P < 0.001). This diminished PV-LA coupling prevented the reinduction of LSPV focal activations in all dogs. However, persistent LOM focal activations in two dogs continued to activate the LSPV rapidly [cycle length 151.8 ms (SD 4.8)] via direct LOM-LSPV connections. LOM-LSPV connection forms an accessory pathway that contributes to the electrical coupling between LSPV and LA during SR and AF. This pathway may contribute to rapid activations within the LSPV during AF.
马歇尔韧带(LOM)在心房颤动(AF)期间对左上肺静脉(LSPV)内快速激活的重要性仍知之甚少。我们旨在确定LSPV与左心房(LA)之间的电耦合以及LOM在该肺静脉内高频激活产生中的重要性。我们对8只犬的LSPV-LA-LOM交界处进行了高密度标测,在进行后开口消融以减少PV-LA电连接之前和之后,使用1344个电极,分辨率为1毫米。在窦性心律(SR)和LA起搏期间,所有犬的LSPV内均可记录到高达6.5毫米(标准差2.2)的LOM电位。8只犬中有5只存在绕过PV-LA交界处的功能性LOM-LSPV电连接。在AF期间,直接的LOM-LSPV连接占LSPV激活的46.5%(标准差16.0),导致形成局灶性激活的倾向更大(P<0.05),与没有直接LOM连接的LSPV相比,有直接LOM连接的LSPV在AF期间的激活率更高(P<0.03)。在不损伤前壁或LOM的情况下进行LSPV后开口消融可减慢残余的LA-PV传导(P<0.001)。这种PV-LA耦合的减弱可防止所有犬的LSPV局灶性激活再次诱发。然而,两只犬中持续的LOM局灶性激活通过直接的LOM-LSPV连接继续快速激活LSPV[周期长度151.8毫秒(标准差4.8)]。LOM-LSPV连接形成一条辅助通路,在SR和AF期间有助于LSPV与LA之间的电耦合。该通路可能有助于AF期间LSPV内的快速激活。