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首页> 外文期刊>Heart rhythm: the official journal of the Heart Rhythm Society >Antiarrhythmic effects of vagal nerve stimulation after cardiac sympathetic denervation in the setting of chronic myocardial infarction
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Antiarrhythmic effects of vagal nerve stimulation after cardiac sympathetic denervation in the setting of chronic myocardial infarction

机译:慢性心肌梗死术后心脏交感神经疗效后迷失神经刺激的抗心律失常作用

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摘要

BackgroundNeuraxial modulation with cardiac sympathetic denervation (CSD) can potentially reduce burden of ventricular tachyarrhythmia (VT). However, despite catheter ablation and CSD, VT can recur in patients with cardiomyopathy and the role of vagal nerve stimulation (VNS) in this setting is unclear. ObjectiveThe purpose of this study was to evaluate the electrophysiological effects of VNS after CSD in normal and infarcted hearts. MethodsIn 10 normal and 6 infarcted pigs, electrophysiological and hemodynamic parameters were evaluated before and during intermittent VNS pre-CSD (bilateral stellectomy and T2–T4 thoracic ganglia removal) as well as post-CSD. The effect of VNS during isoproterenol was also assessed pre- and post-CSD. Multielectrode ventricular activation recovery interval (ARI) recordings, a surrogate of action potential duration, were obtained. VT inducibility was tested during isoproterenol infusion after CSD with and without VNS. ResultsVNS increased the global ARI by 4% ± 4% pre-CSD and by?5% ± 6% post-CSD, with enhanced effects observed during isoproterenol infusion (10% ± 8% pre-CSD and 12% ± 9% post-CSD) in normal animals. In infarcted animals pre-CSD, VNS increased ARI by 6% ± 7% before and by 13% ± 8% during isoproterenol infusion. Post-CSD, VNS increased ARI by 6% ± 5% before and by 11% ± 7% during isoproterenol infusion. VT was inducible in all infarcted animals post-CSD during isoproterenol infusion; this inducibility was reduced by 67% with VNS (P= .01). In all animals, the hemodynamic effects of VNS remained after CSD. ConclusionAfter CSD, the beneficial electrophysiological effects of VNS remain. Furthermore, VNS can reduce VT inducibility beyond CSD in the setting of circulating catecholamines, suggesting a role for additional parasympathetic modulation in the treatment of ventricular arrhythmias.
机译:BackgroundneuRaxial调制用心脏交感神经去剥离(CSD)可能会减少心室性心律失常(VT)的负担。然而,尽管导管消融和CSD,VT可以在患有心肌病的患者中复发,并且在该环境中迷失神经刺激(VNS)的作用尚不清楚。本研究的客观目的是评估CSD正常和梗死的心脏后VNS的电生理学效应。方法10正常和6只令人生畏的猪,在间歇性VNS Pre-CSD(双侧宿骨切除术和T2-T4胸神经节去除)以及CSD后的间歇性VNS血液动力学参数。还评估了VNS期间VNS在CSD中和后蛋白酶中的影响。获得多电极心室激活恢复间隔(ARI)录像,获得潜在持续时间的替代。在CSD的异丙醇输注期间测试VT诱导性,没有VNS。结果vns将全局ARI增加4%±4%PRE-CSD和CSD后的5%±6%,在异丙肾上期间观察到的增强效果(10%±8%PRE-CSD,12%±9% CSD)在正常动物中。在梗死的动物前CSD中,VN在异丙酚输注期间增加了6%±7%和13%±8%。后CSD,VNS在异丙酚输注期间增加了6%±5%,在异丙肾上腺素输注过程中增加了11%±7%。在异丙醇输注期间,在CSD后的所有梗死动物中诱导vt; VNS(p = .01),这种诱导性降低了67%。在所有动物中,CSD后VN的血液动力学效应保持在CSD之后。结论CSD,VNS的有益电生理学效应。此外,VN可以在循环的儿茶酚胺的设置中降低在CSD之外的VT诱导性,表明在治疗心律失常中的额外副交感神经调节的作用。

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