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首页> 外文期刊>Heart rhythm: the official journal of the Heart Rhythm Society >Interactions between atrial electrical remodeling and autonomic remodeling: How to break the vicious cycle
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Interactions between atrial electrical remodeling and autonomic remodeling: How to break the vicious cycle

机译:心房电重构与自主神经重构之间的相互作用:如何打破恶性循环

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摘要

BACKGROUND: The mechanism(s) underlying the maintenance of atrial fibrillation (AF) during the first few hours after AF was initiated remains poorly understood. OBJECTIVE: To investigate the roles of the intrinsic cardiac autonomic nervous system in the maintenance of AF at the early stage. METHODS: In 10 anesthetized dogs, we attached multielectrode catheters on atria and pulmonary veins. Microelectrodes inserted into the anterior right ganglionated plexi recorded neural activity. At baseline, programmed stimulation determined the effective refractory period (ERP) and window of vulnerability (WOV), a measure of AF inducibility. For the next 6 hours, AF was simulated by rapid atrial pacing (RAP) and the same parameters were measured hourly during sinus rhythm. A circular catheter was positioned in the superior vena cava for high-frequency stimulation (20 Hz) of the adjacent vagal preganglionics. During 4-6 hours of RAP, we delivered low-level vagal stimulation in the superior vena cava (LL-SVCS), 50% below that which induced slowing of the sinus rate. RESULTS: During the 6-hour RAP, there was a progressive decrease in the ERP and an increase in ERP dispersion, WOV, and neural activity. With LL-SVCS during 4-6-hour RAP, ERP, WOV, and neural activity returned toward baseline levels (all P <.05, compared with the third-hour RAP values). CONCLUSIONS: RAP not only induces atrial electrical remodeling but also promotes autonomic remodeling. These 2 remodeling processes may form a vicious cycle and each may perpetuate the other. These findings may help to explain how AF maintains itself in its very early stage. LL-SVCS both reversed remodeling processes and can potentially break the vicious cycle of "AF begets AF" in the first few hours of AF.
机译:背景:房颤发作后最初几个小时内维持房颤的机制尚不清楚。目的:探讨心脏自主神经系统在早期维持房颤中的作用。方法:在10只麻醉的狗中,我们在心房和肺静脉上连接了多电极导管。插入右前神经节丛的微电极记录了神经活动。在基线时,程序刺激确定了有效不应期(ERP)和脆弱性窗口(WOV),这是AF诱导性的量度。在接下来的6小时内,通过快速心房起搏(RAP)模拟房颤,并在窦性心律期间每小时测量一次相同的参数。将圆形导管放置在上腔静脉中,以高频刺激(20 Hz)相邻的迷走神经节前神经节。在RAP的4-6小时内,我们在上腔静脉(LL-SVCS)中进行了低水平的迷走神经刺激,比引起鼻窦窦速度减慢的迷走神经刺激低50%。结果:在6个小时的RAP期间,ERP逐渐下降,ERP离散度,WOV和神经活动增加。在4-6小时RAP期间使用LL-SVCS,ERP,WOV和神经活动恢复至基线水平(与第三小时RAP值相比,所有P <.05)。结论:RAP不仅引起心房电重构,而且还促进自主神经重构。这两个重塑过程可能形成一个恶性循环,并且每个过程都可以彼此延续。这些发现可能有助于解释房颤如何在早期阶段自我维持。 LL-SVCS既可以颠倒重塑过程,又可以在AF的前几个小时打破“ AF引发AF”的恶性循环。

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