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首页> 外文期刊>Journal of Electrocardiology: An International Publication for the Study of the Electrical Activities of the Heart >Spatial coherence: a new method of quantifying myocardial electrical organization using multichannel epicardial electrograms.
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Spatial coherence: a new method of quantifying myocardial electrical organization using multichannel epicardial electrograms.

机译:空间连贯性:一种使用多通道心外膜电描记图定量心肌电组织的新方法。

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摘要

A new technique has been developed to quantify the organization of myocardial electrical activity. The spatial coherence technique employs the use of the magnitude-squared coherence (MSC) spectrum to analyze multichannel electrograms obtained during cardiac mapping. In this study, MSC values for all possible pairs of electrograms recorded from an epicardial plaque consisting of 112 electrodes were computed and systematically integrated to form a three-dimensional coherence surface, that is, a graphical representation of average coherence values versus the spatial orientation of one electrode to another. From this surface, two-dimensional graphs of average coherence versus electrode separation distance were derived, and the data were fitted to an exponentially decaying curve. Two novel parameters indicative of myocardial organization were then extracted from the curves, the coherence length parameter and the coherence plateau parameter. Higher values for these parameters were hypothesized to reflect greater levels of organization of the rhythm. A total of 164 mapping sessions were performed on nine dogs. Three-second data segments of normal sinus rhythm (NSR) and ventricular fibrillation (VF) were analyzed by using spatial coherence. Coherence lengths were found to be significantly longer (24.3 +/- 13.4 vs 0.165 +/- 0.053 mm, P = .0001) and coherence plateau values significantly higher (0.896 +/- 0.104 vs 0.098 +/- 0.008, P = .0001) for NSR than for VF. In addition, one instance of ventricular tachycardia, a rhythm more organized than VF, had coherence parameter values greater than those for VF but less than those for NSR (coherence length = 1.23 mm, coherence plateau value = 0.597). These results suggest that spatial coherence may be an effective means of quantifying the electrical organization of a particular cardiac rhythm. The advantages of this technique are (1) it extracts a single parameter from the vast amount of data that is generated in a typical mapping study, thus allowing easy characterization of different cardiac rhythms in terms of their level of organization, and (2) it does not require activation time detection, a process that is difficult when studying arrhythmias such as ventricular fibrillation.
机译:已经开发出一种新技术来量化心肌电活动的组织。空间相干技术利用幅度平方相干(MSC)频谱来分析在心脏测绘期间获得的多通道电描记图。在这项研究中,计算了从由112个电极组成的心外膜斑中记录的所有可能的成对的电描记图的MSC值,并对其进行了系统地积分,以形成三维相干表面,即,平均相干值相对于空间方向的图形表示一个电极到另一个。从该表面得出平均相干性与电极分离距离的二维关系图,并将数据拟合为指数衰减曲线。然后从曲线中提取两个新的指示心肌组织的参数,相干长度参数和相干平稳参数。假设这些参数的值较高,以反映节奏组织的更高水平。对9只狗进行了总共164次作图。使用空间相干性分析了正常窦性心律(NSR)和心室纤颤(VF)的三秒数据段。发现相干长度明显更长(24.3 +/- 13.4 vs 0.165 +/- 0.053 mm,P = .0001)并且相干平稳值显着更高(0.896 +/- 0.104 vs 0.098 +/- 0.008,P = .0001 ),而不是VF。另外,一种心室性心动过速的情况(一种比VF更有规律的心律),其相干参数值大于VF,但小于NSR(相干长度= 1.23 mm,相干平稳值= 0.597)。这些结果表明,空间连贯性可能是量化特定心律的电组织的有效手段。该技术的优点是:(1)从典型的作图研究中生成的大量数据中提取单个参数,从而可以根据其组织水平轻松表征不同的心律,(2)不需要激活时间检测,这一过程在研究心律不齐(例如心室纤颤)时很困难。

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