Dosdall Derek J, Tabereaux Paul B, Kim Jong J, Walcott Gregory P, Rogers Jack M, Killingsworth Cheryl R, Huang Jian, Robertson Peter G, Smith William M, Ideker Raymond E
Volker Hall B140, 1670 Univ. Blvd., Birmingham, AL 35294-0019, USA.
Am J Physiol Heart Circ Physiol. 2008 Aug;295(2):H883-9. doi: 10.1152/ajpheart.00466.2008. Epub 2008 Jun 27.
Endocardial mapping has suggested that Purkinje fibers may play a role in the maintenance of long-duration ventricular fibrillation (LDVF). To determine the influence of Purkinje fibers on LDVF, we chemically ablated the Purkinje system with Lugol solution and recorded endocardial and transmural activation during LDVF. Dog hearts were isolated and perfused, and the ventricular endocardium was exposed and treated with Lugol solution (n = 6) or normal Tyrode solution as a control (n = 6). The left anterior papillary muscle endocardium was mapped with a 504-electrode (21 x 24) plaque with electrodes spaced 1 mm apart. Transmural activation was recorded with a six-electrode plunge needle on each side of the plaque. Ventricular fibrillation (VF) was induced, and perfusion was halted. LDVF spontaneously terminated sooner in Lugol-ablated hearts than in control hearts (4.9 +/- 1.5 vs. 9.2 +/- 3.2 min, P = 0.01). After termination of VF, both the control and Lugol hearts were typically excitable, but only short episodes of VF could be reinduced. Endocardial activation rates were similar during the first 2 min of LDVF for Lugol-ablated and control hearts but were significantly slower in Lugol hearts by 3 min. In control hearts, the endocardium activated more rapidly than the epicardium after 4 min of LDVF with wave fronts propagating most often from the endocardium to epicardium. No difference in transmural activation rate or wave front direction was observed in Lugol hearts. Ablation of the subendocardium hastens VF spontaneous termination and alters VF activation sequences, suggesting that Purkinje fibers are important in the maintenance of LDVF.
心内膜标测提示浦肯野纤维可能在持续性室颤(LDVF)的维持中起作用。为确定浦肯野纤维对LDVF的影响,我们用卢戈氏溶液化学消融浦肯野系统,并记录LDVF期间的心内膜和透壁激动情况。将犬心脏分离并灌注,暴露心室心内膜,用卢戈氏溶液处理(n = 6)或用正常台氏液作为对照(n = 6)。用一个504电极(21×24)的电极板对左前乳头肌心内膜进行标测,电极间距为1毫米。用一个六电极穿刺针在电极板两侧记录透壁激动情况。诱发室颤(VF),并停止灌注。卢戈氏溶液消融组心脏的LDVF自发终止时间比对照组心脏更早(4.9±1.5分钟对9.2±3.2分钟,P = 0.01)。VF终止后,对照组和卢戈氏溶液处理组心脏通常都具有兴奋性,但只能再次诱发短暂的VF发作。在LDVF的最初2分钟内,卢戈氏溶液消融组和对照组心脏的心内膜激动速率相似,但在3分钟时,卢戈氏溶液处理组心脏的心内膜激动速率明显减慢。在对照组心脏中,LDVF发作4分钟后,心内膜比心外膜激动更快,波前最常从心内膜向心外膜传播。在卢戈氏溶液处理组心脏中,未观察到透壁激动速率或波前方向的差异。心内膜下层的消融加速了VF的自发终止并改变了VF激动顺序,提示浦肯野纤维在LDVF的维持中起重要作用。