Department of Bioengineering, Politecnico di Milano, Milan, Italy.
Med Biol Eng Comput. 2010 Apr;48(4):381-7. doi: 10.1007/s11517-010-0588-z. Epub 2010 Feb 18.
Atrial fibrillation (AF) is characterized by desynchronization of atrial electrical activity causing a consequent irregular ventricular response. In AF, the beat-to-beat variation of blood pressure is increased because of variations in filling time and contractility. However, only a few studies have analyzed short-term blood pressure variations in AF, and we have recently observed a harmonic low-frequency (LF) component in systolic arterial pressure (SAP) during AF. Aim of the present study is to propose a method to verify the reliability of the spectral component found in SAP series, based on the position of the poles of the autoregressive spectral decomposition in the z-plane. In particular, 1,000 random permutations of the series allowed the definition of an area in the z-plane where poles from random process are likely to occur. Poles lying outside this area are considered as reliable oscillations. We tested the method on 53 recordings obtained at rest from patients with persistent AF. LF component was found in, respectively, 51 and 43 recordings in SAP and RR series. High-frequency (HF) component was found in all the recordings for both SAP and RR series. Using the proposed test, the percentage of reliable components in LF and HF bands was 80 and 38 in SAP series, and 20 and 18 in RR series. We concluded that, at variance with RR ones, SAP LF components are likely to represent true physiological oscillations.
心房颤动(AF)的特征是心房电活动失同步,导致随后出现不规则的心室反应。在 AF 中,由于充盈时间和收缩性的变化,血压的逐拍变化增加。然而,只有少数研究分析了 AF 中的短期血压变化,我们最近观察到 AF 期间收缩压(SAP)中存在谐波低频(LF)成分。本研究的目的是提出一种基于自回归谱分解在 z 平面上的极点位置验证 SAP 系列中发现的谱分量可靠性的方法。特别是,对系列进行 1000 次随机置换允许在 z 平面上定义一个区域,其中随机过程的极点可能发生。位于该区域之外的极点被认为是可靠的振荡。我们在 53 名持续性 AF 患者休息时获得的记录中测试了该方法。分别在 SAP 和 RR 系列中的 51 个和 43 个记录中发现 LF 分量。对于 SAP 和 RR 系列,所有记录中均发现高频(HF)分量。使用所提出的测试,LF 和 HF 带中可靠分量的百分比分别为 SAP 系列中的 80%和 38%,以及 RR 系列中的 20%和 18%。我们得出结论,与 RR 系列不同,SAP LF 分量可能代表真实的生理振荡。