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Extraction of the aortic and pulmonary components of the second heart sound using a nonlinear transient chirp signal model

机译:使用非线性瞬态线性调频信号模型提取第二种心音的主动脉和肺部成分

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The objective of this paper is to adapt and validate a nonlinear transient chirp signal modeling approach for the analysis and synthesis of overlapping aortic (A/sub 2/) and pulmonary (P/sub 2/) components of the second heart sound (S/sub 2/) The approach is based on the time-frequency representation of multicomponent signals for estimating and reconstructing the instantaneous phase and amplitude functions of each component. To evaluate the accuracy of the approach, a simulated S/sub 2/ with A/sub 2/ and P/sub 2/ components having different overlapping intervals (5-30 ms) was synthesized. The simulation results show that the technique is very effective for extracting the two components, even in the presence of noise (-15 dB). The normalized root-mean-squared error between the original A/sub 2/ and P/sub 2/ components and their reconstructed versions varied between 1% and 6%, proportionally to the duration of the overlapping interval, and it increased by less than 2% in the presence of noise. The validated technique was then applied to S/sub 2/ components recorded in pigs under normal or high pulmonary artery pressures. The results show that this approach can successfully isolate and extract overlapping A/sub 2/ and P/sub 2/ components from successive S/sub 2/ recordings obtained from different heartbeats of the same animal as well from different animals.
机译:本文的目的是适应和验证非线性瞬态线性调频信号建模方法,用于分析和合成第二种心音(S //的重叠主动脉(A / sub 2 /)和肺部(P / sub 2 /)分量sub 2 /)该方法基于多分量信号的时频表示,用于估计和重构每个分量的瞬时相位和幅度函数。为了评估该方法的准确性,合成了具有不同重叠间隔(5-30毫秒)的A / sub 2 /和P / sub 2 /分量的模拟S / sub 2 /。仿真结果表明,该技术即使在存在噪声(-15 dB)的情况下也能非常有效地提取两个分量。原始A / sub 2 /和P / sub 2 /分量及其重构版本之间的归一化均方根误差在1%和6%之间变化,与重叠间隔的持续时间成比例,并且增加的幅度小于在有噪音的情况下为2%。然后将经过验证的技术应用于在正常或高肺动脉压下猪中记录的S / sub 2 /成分。结果表明,该方法可以成功地从同一动物的不同心跳以及不同动物的连续S / sub 2 /记录中分离并提取重叠的A / sub 2 /和P / sub 2 /组分。

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