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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Atrial electromechanical cycle length mapping in paced canine hearts in vivo
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Atrial electromechanical cycle length mapping in paced canine hearts in vivo

机译:心脏起搏犬心房的心电机电周期长度图

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Atrial arrhythmias affect millions of people worldwide. Characterization and study of arrhythmias in the atria in the clinic is currently performed point by point using mapping catheters capable of generating maps of the electrical activation rate or cycle length. In this paper, we describe a new ultrasound-based mapping technique called electromechanical cycle length mapping (ECLM) capable of estimating the electromechanical activation rate, or cycle length, i.e., the rate of the mechanical activation of the myocardium which follows the electrical activation. ECLM relies on frequency analysis of the incremental strain within the atria and can be performed in a single acquisition. ECLM was validated in a canine model paced from the left atrial appendage, against pacing rates within the reported range of cycle lengths previously measured during atrial arrhythmias such as atrial fibrillation. Correlation between the global estimated electromechanical cycle lengths and pacing rates was shown to be excellent (slope = 0.983, intercept = 3.91, r = 0.9999). The effect of the number of cardiac cycles on the performance of ECLM was also investigated and the reproducibility of ECLM was demonstrated (error between consecutive acquisitions for all pacing rates: 6.3 ?? 4.3%). These findings indicate the potential of ECLM for noninvasively characterizing atrial arrhythmias and provide feedback on the treatment planning of catheter ablation procedures in the clinic.
机译:房性心律失常影响全世界数百万人。目前,在临床中使用能够产生电激活率或周期长度图的测绘导管逐点进行心房心律不齐的表征和研究。在本文中,我们描述了一种新的基于超声的映射技术,称为机电周期长度映射(ECLM),它能够估算机电激活率或周期长度,即跟随电激活的心肌的机械激活率。 ECLM依靠对心房内增量应变的频率分析,并且可以单次执行。在从左心耳起搏的犬模型中,对ECLM进行了验证,其相对于先前报道的在心律失常(例如心房颤动)期间测量的周期长度范围内的起搏率。总体上估计的机电周期长度与起搏速度之间的相关性非常好(斜率= 0.983,截距= 3.91,r = 0.9999)。还研究了心动周期数对ECLM性能的影响,并证明了ECLM的可重复性(所有起搏率的连续采集之间的误差:6.3±4.3%)。这些发现表明ECLM在无创性分析房性心律失常方面的潜力,并为临床上导管消融手术的治疗计划提供反馈。

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