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首页> 外文期刊>Circulation: An Official Journal of the American Heart Association >Role of conduction velocity restitution and short-term memory in the development of action potential duration alternans in isolated rabbit hearts.
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Role of conduction velocity restitution and short-term memory in the development of action potential duration alternans in isolated rabbit hearts.

机译:传导速度恢复和短期记忆在离体兔心脏动作电位持续时间交替发展中的作用。

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摘要

BACKGROUND: Spatially discordant alternans (SDA) has been linked to life-threatening arrhythmias. The mechanisms underlying SDA development in cardiac tissue remain unclear. METHODS AND RESULTS: We investigated the role of conduction velocity (CV) restitution and short-term memory in the organization and evolution of alternans in action potential duration using high-resolution optical mapping of the epicardial surface in 8 isolated, Langendorff-perfused rabbit hearts. To assess the spatial organization of alternans, we tracked the evolution of nodal lines that separate out-of-phase regions of SDA. We measured the action potential duration heterogeneity index and maximal slope of CV restitution and estimated the effects of short-term memory by calculating time constant of action potential duration accommodation (tau). We found that 2 mechanisms underlie the development of SDA in the heart, leading to 2 distinct behaviors of nodal lines. The first mechanism is based on steep CV restitution and is associated with small tau and stable nodal lines. The second mechanism is associated with short-term memory (large tau) and is characterized by shallow CV restitution and unstable behavior of nodal lines. The maximum slope of the CV restitution was steeper (18.16+/-3.34 m/s(2)) and tau was smaller (tau=4.31+/-0.33 stimuli) for areas with stable nodal lines than for areas with unstable nodal lines (6.32+/-0.96 m/s(2) and tau=10.3+/-1.84 stimuli; P<0.01). CONCLUSIONS: Our results provide new insight into the mechanisms underlying SDA formation in the rabbit heart. Specifically, our results suggest that a new mechanism associated with short-term memory underlies SDA formation in the heart, in addition to steep CV restitution.
机译:背景:空间不一致的交替蛋白(SDA)与威胁生命的心律失常有关。心脏组织中SDA发育的潜在机制仍不清楚。方法和结果:我们使用心外膜表面的高分辨率光学成像技术,在8只离体的Langendorff灌注的兔心中,通过心外膜表面的光学成像,研究了传导速度(CV)恢复和短期记忆在动作电位持续时间中交替素的组织和进化中的作用。 。为了评估交替基因的空间组织,我们追踪了分离SDA异相区域的节线的演变。我们测量了动作电位持续时间异质性指数和CV恢复的最大斜率,并通过计算动作电位持续时间调节(tau)的时间常数来估计短期记忆的影响。我们发现心脏SDA的发展有2种机制,导致2种不同的结线行为。第一种机制基于陡峭的CV恢复,并与小tau和稳定的结线有关。第二种机制与短期记忆(大tau)有关,其特征是CV恢复较浅和结线行为不稳定。与节点线不稳定的区域相比,节点线稳定的区域的CV恢复最大斜率更陡(18.16 +/- 3.34 m / s(2)),tau较小(tau = 4.31 +/- 0.33刺激)。 6.32 +/- 0.96 m / s(2)和tau = 10.3 +/- 1.84刺激; P <0.01)。结论:我们的结果提供了新的见解,在兔心脏中SDA形成的潜在机制。具体而言,我们的研究结果表明,除了陡峭的CV恢复之外,与短期记忆相关的新机制还可以使心脏中的SDA形成成为基础。

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