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Noninvasive characterisation of short- and long-term recurrence of atrial signals during persistent atrial fibrillation

机译:持续性房颤期间心房信号短期和长期复发的非侵入性特征

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Propagation of electrical atrial activity (AA) during atrial fibrillation (AF) is a process characterized by different short- and long-term recurrence behaviours. Two antithetical (not mutually exclusive) hypotheses were proposed to noninvasively describe this nonstationary behaviour. The first hypothesis (H1) assumes a process with stationary spatial properties of AA propagation, but time-varying frequency properties, and vice versa for the second (H2). Based on H1 and H2, two phenomenological models were proposed, both able to replicate observations on AF patients, and a novel measure was introduced to assess the spatial variability of AA propagation (SVAAP) over short and long AA segments. Validity of the models was tested by looking at the relation between SVAAP-short and SVAAP-long on real observations from AF patients (high-density body surface potential maps recorded in 75 patients affected by persistent AF). H1 is confirmed if SVAAP-short is approximately equal to SVAAP-long. H2 if SVAAP-short is less than SVAAP-long. Results confirmed H2, showing that AA propagation during AF has strong nonstationary spatial properties. This could suggest new parameters to characterise AF substrate and predict therapy outcome.
机译:心房颤动(AF)期间心房电活动(AA)的传播是一个以短期和长期复发行为不同为特征的过程。提出了两个对立的(非互斥的)假设来非侵入性地描述这种非平稳行为。第一个假设(H1)假设一个过程具有AA传播的固定空间特性,但时变频率特性,而第二个假设(H2)则相反。基于H1和H2,提出了两个现象学模型,它们都能够复制对AF患者的观察结果,并且引入了一种新的方法来评估短时和长时AA区段中AA传播(SVAAP)的空间变异性。通过在来自AF患者的真实观察中观察SVAAP-short和SVAAP-long之间的关系来测试模型的有效性(在75例持续性AF影响的患者中记录了高密度的体表电位图)。如果SVAAP-short大约等于SVAAP-long,则确认H1。如果SVAAP-short小于SVAAP-long,则为H2。结果证实了H2,表明在AF期间AA传播具有很强的非平稳空间特性。这可能会提出新的参数来表征房颤基质并预测治疗结果。

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