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Quasi-periodic modeling for heart sound localization and suppression in lung sounds

机译:准周期性建模,用于心音定位和肺音抑制

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We present a novel approach to treating lung sounds contaminated by heart sounds by means of quasi-periodic signal modeling. Heart sounds are described through the long and short-term quasi-periodicity generated by cardiac cycle repetition and oscillations caused by valves openings and closures, respectively. In terms of signals, these quasi-periodicities drive time-variant HS envelope and phase which are modeled by single and piecewise time polynomials, respectively. Single polynomials account for slow and continuous envelope time variations, while piecewise polynomials capture fast and abrupt phase changes in short time intervals. Such a compact signal description provides an efficient way to fundamental heart sound (FHS) components localization and posterior removal from lung sounds. The results show that the proposed method outperforms two reference methods for medium (15 ml/s/kg) and high (22.5 ml/s/kg) air flow rates.
机译:我们提出了一种通过准周期信号建模来治疗被心音污染的肺音的新颖方法。心音通过心动周期重复产生的长期和短期准周期以及阀打开和关闭引起的振荡来描述。在信号方面,这些准周期驱动时变HS包络和相位,它们分别由单次和分段时间多项式建模。单个多项式说明了缓慢和连续的包络时间变化,而分段多项式则在较短的时间间隔内捕获了快速且突变的相位变化。这种紧凑的信号描述提供了一种基本的心音(FHS)组件定位和从肺音后路去除的有效方法。结果表明,对于中等(15 ml / s / kg)和高(22.5 ml / s / kg)的空气流速,该方法优于两种参考方法。

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