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Determination of the conduction paths from the left to the right atrium using frequency analysis of atrial electrograms in two canine models of atrial fibrillation

机译:用心房颤动两犬模型中心房电视图的频率分析测定左侧瘘的传导路径

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Studies of atrial fibrillation (AF) have demonstrated that a stable rhythm of very short cycle length in the left atrium (LA) can cause a fibrillatory conduction in the right atrium (RA). We tested the hypothesis that FFT analysis of atrial electrograms (AEGs) during AF will rapidly and reliably identify the LA to RA conduction path(s). During induced AF, four sec recording segments from 203 bipolar AEGs went subjected to FFT to obtain the frequency analysis. FFT analysis of AF showed a dominant frequency peak in the LA and multiple frequency peaks in the RA. Conduction paths to the RA varied from study-to-study, and were found between the superior vena cava and the right superior pulmonary vein (RSPV), between the RSPV and the right inferior pulmonary vein (RIPV), between the RIPV and the inferior vena cava (IVC), under the IVC, and from Bachmann's bundle to the right atrial appendage. These conduction paths identified by FFT analysis corresponded to the conduction paths found in activation sequence mapping. FFT analysis allowed rapid and reliable detection of the LA to RA conduction paths in AF.
机译:对心房颤动(AF)的研究表明,左心房(LA)中非常短的循环长度的稳定节律会导致右中庭(RA)中的纤维导电。我们测试了假设,即AF期间心房电视图(AEGS)的FFT分析快速且可靠地识别LA转导路径。在诱导的AF期间,来自203个双极AEGS的四个秒记录段对FFT进行了频率分析。 AF的FFT分析在RA中显示了LA和多频峰的显性频率峰值。从研究到研究中的传导路径不同,并且在RSPV和右下肺静脉(RIPV)之间,在RSPV和右下肺静脉之间(RSPV)之间发现,在RIPv和劣质之间静脉静脉(IVC),在IVC下,从Bachmann的捆绑到右心房附属物。通过FFT分析识别的这些传导路径对应于激活序列映射中的传导路径。 FFT分析允许快速可靠地检测AF中的LA变为RA传导路径。

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