首页> 美国卫生研究院文献>Journal of Personalized Medicine >Influence of Heart Rate and Change in Wavefront Direction through Pacing on Conduction Velocity and Voltage Amplitude in a Porcine Model: A High-Density Mapping Study
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Influence of Heart Rate and Change in Wavefront Direction through Pacing on Conduction Velocity and Voltage Amplitude in a Porcine Model: A High-Density Mapping Study

机译:心率和通过起搏的波前方向变化对猪模型中传导速度和电压幅度的影响:一项高密度映射研究

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摘要

Background: Understanding the dynamics of conduction velocity (CV) and voltage amplitude (VA) is crucial in cardiac electrophysiology, particularly for substrate-based catheter ablations targeting slow conduction zones and low voltage areas. This study utilizes ultra-high-density mapping to investigate the impact of heart rate and pacing location on changes in the wavefront direction, CV, and VA of healthy pig hearts. Methods: We conducted in vivo electrophysiological studies on four healthy juvenile pigs, involving various pacing locations and heart rates. High-resolution electroanatomic mapping was performed during intrinsic normal sinus rhythm (NSR) and electrical pacing. The study encompassed detailed analyses at three levels: entire heart cavities, subregions, and localized 5-mm-diameter circular areas. Linear mixed-effects models were used to analyze the influence of heart rate and pacing location on CV and VA in different regions. Results: An increase in heart rate correlated with an increase in conduction velocity and a decrease in voltage amplitude. Pacing influenced conduction velocity and voltage amplitude. Pacing also influenced conduction velocity and voltage amplitude, with varying effects observed based on the pacing location within different heart cavities. Pacing from the right atrium (RA) decreased CV in all heart cavities. The overall CV and VA changes in the whole heart cavities were not uniformly reflected in all subregions and subregional CV and VA changes were not always reflected in the overall analysis. Overall, there was a notable variability in absolute CV and VA changes attributed to pacing. Conclusions: Heart rate and pacing location influence CV and VA within healthy juvenile pig hearts. Subregion analysis suggests that specific regions of the heart cavities are more susceptible to pacing. High-resolution mapping aids in detecting regional changes, emphasizing the substantial physiological variations in CV and VA.
机译:背景:了解传导速度 (CV) 和电压振幅 (VA) 的动力学在心脏电生理学中至关重要,特别是对于针对慢导带和低电压区域的基于基材的导管消融。本研究利用超高密度映射来研究心率和起搏位置对健康猪心脏波前方向、CV 和 VA 变化的影响。方法: 我们对 4 头健康的幼猪进行了体内电生理研究,涉及不同的起搏位置和心率。在内在正常窦性心律 (NSR) 和电起搏期间进行高分辨率电解剖标测。该研究包括三个级别的详细分析:整个心脏腔、亚区域和局部直径为 5 mm 的圆形区域。采用线性混合效应模型分析心率和起搏位置对不同区域 CV 和 VA 的影响。结果:心率的增加与传导速度的增加和电压幅度的降低相关。起搏影响传导速度和电压幅度。起搏还影响传导速度和电压幅度,根据不同心脏腔内的起搏位置观察到不同的影响。从右心房 (RA) 起搏降低了所有心腔的 CV。整个心脏腔的总体 CV 和 VA 变化并未均匀反映在所有亚区域中,并且亚区域 CV 和 VA 变化并不总是反映在整体分析中。总体而言,归因于起搏的绝对 CV 和 VA 变化存在显着差异。结论: 心率和起搏位置影响健康幼猪心脏的 CV 和 VA。亚区域分析表明,心脏腔的特定区域更容易受到起搏的影响。高分辨率标测有助于检测区域变化,强调 CV 和 VA 的实质性生理变化。

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