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Assessing the atrial electromechanical coupling during atrial focal tachycardia, flutter, and fibrillation using electromechanical wave imaging in humans

机译:使用人体的机电波成像评估房性局灶性心动过速,扑动和心律颤动期间的房室机电耦合

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Minimally-invasive treatments of cardiac arrhythmias such as radio-frequency ablation are gradually gaining importance in clinical practice but still lack a noninvasive imaging modality which provides insight into the source or focus of an arrhythmia. Cardiac deformations imaged at high temporal and spatial resolution can be used to elucidate the electrical activation sequence in normal and paced human subjects non-invasively and could potentially aid to better plan and monitor ablation-based arrhythmia treatments. In this study, a novel ultrasound-based method is presented that can be used to quantitatively characterize focal and reentrant arrhythmias. Spatio-temporal maps of the full-view of the atrial and ventricular mechanics were obtained in a single heartbeat, revealing with otherwise unobtainable detail the electromechanical patterns of atrial flutter, fibrillation, and tachycardia in humans. During focal arrhythmias such as premature ventricular complex and focal atrial tachycardia, the previously developed electromechanical wave imaging methodology is hereby shown capable of identifying the location of the focal zone and the subsequent propagation of cardiac activation. During reentrant arrhythmias such as atrial flutter and fibrillation, Fourier analysis of the strains revealed highly correlated mechanical and electrical cycle lengths and propagation patterns. High frame rate ultrasound imaging of the heart can be used non-invasively and in real time, to characterize the lesser-known mechanical aspects of atrial and ventricular arrhythmias, also potentially assisting treatment planning for intraoperative and longitudinal monitoring of arrhythmias. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对心律不齐的微创治疗,例如射频消融,在临床实践中正逐渐变得重要,但仍缺乏一种非侵入性的成像方式,可以提供对心律不齐的来源或焦点的了解。以高时间和空间分辨率成像的心脏变形可用于无创地阐明正常和有节奏的人类受试者的电激活序列,并可能有助于更好地计划和监测基于消融的心律失常治疗。在这项研究中,提出了一种新的基于超声的方法,可用于定量表征局灶性和折返性心律失常。在单个心跳中获得了整个心房和心室力学的时空图,以其他方式无法获得的细节揭示了人心房颤动,纤颤和心动过速的机电模式。因此,在局灶性心律不齐,例如室性早搏和局灶性房性心动过速中,先前开发的机电波成像方法可显示出局灶性区域的位置以及随后的心脏激活传播。在折返性心律不齐(例如心房扑动和纤颤)期间,对菌株进行的傅立叶分析显示出高度相关的机械和电周期长度以及传播方式。心脏的高帧频超声成像可非侵入性地实时使用,以表征较鲜为人知的房性和室性心律失常的机械方面,还可能有助于治疗规划以进行术中和纵向心律失常监测。 (C)2015 Elsevier Ltd.保留所有权利。

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