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Estimation of Arterial Wall Moving Velocities by Application of Hilbert-Huang Processing to Continuous Wave Doppler Ultrasound Signals: A Simulation Study

机译:Hilbert-Huang处理在连续波多普勒超声信号中估计动脉壁移动速度的估计:模拟研究

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The distension of the vessel wall, which is the variation of a vessel diameter due to the distending blood pressure during a cardiac cycle, is used in the estimation of vessel stiffness parameters. A novel approach based on the empirical mode decomposition (EMD) and the Hilbert spectrum (HS) to estimate the arterial moving velocities from continuous quadrature Doppler signals is proposed in this paper. By using this approach, the high frequency blood flow components are firstly removed by using a low pass filter. Then the bi-directional signals are separated by using the phasing-filter technique. Each unidirectional signal is decomposed into intrinsic mode functions (IMFs) by using the EMD, and then the relevant IMFs from the wall are identified. Finally, the maximum velocity waveforms are extracted from the bidirectional Hilbert spectra. Results from simulation study show that this approach is practical for extracting the maximum velocities of the moving vessel wall correctly.
机译:血管壁的膨胀,其是由于心循环期间引起的血压引起的容器直径的变化,用于估计容器刚度参数。本文提出了一种基于经验模式分解(EMD)和希尔伯特光谱(HS)的新方法,以估计来自连续正交多普勒信号的动脉移动速度。通过使用这种方法,首先使用低通滤波器去除高频血流分量。然后通过使用相位滤波技术来分离双向信号。每个单向信号通过使用EMD分解为内在模式(IMF),然后识别来自墙壁的相关IMF。最后,从双向希尔伯特光谱中提取最大速度波形。仿真研究的结果表明,这种方法可以正确地提取移动容器壁的最大速度实用。

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