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A Simulation Model for Doppler Ultrasound Signals from Pulsatile Blood Flow in Stenosed Vessels

机译:狭窄血管中脉动血流多普勒超声信号的仿真模型

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A computer simulation model is proposed to generating Doppler ultrasound signals from pulsatile blood flow in the vessels with various stenosis degrees. The model take into account velocity field from pulsatile blood flow in the stenosed vessels, sample volume shape and acoustic factors that affect the Doppler signals. By solving the Navier-Stokes equations, the velocity distributions of pulsatile blood flow in the vessels with various stenosis degrees are firstly calculated according to the velocity at the axis of the circular tube. Secondly, power spectral density (PSD) of the Doppler signals is estimated by summing the contribution of all scatterers passing through the sample volume grouped into elemental volumes. Finally, Doppler signals are generated using cosine-superposed components that are modulated by a power spectral density function varying over the cardiac cycle. The model generates Doppler blood flow signals with the characteristics similar to those found in practice. The results show that the proposed approach is useful for simulating Doppler ultrasound signals from pulsatile blood flow in stenosed vessels.
机译:提出了一种计算机仿真模型,以产生多普勒超声信号,从血管中的脉动血流具有各种狭窄程度。该模型考虑了狭窄血管中脉动血流的速度场,样本体积形状和影响多普勒信号的声学因子。通过求解Navier-Stokes方程,首先根据圆形管的轴线处的速度来首先计算具有各种狭窄度的血管血流的速度分布。其次,通过概括将通过分组为元素体积的样品体积的所有散射体的贡献来估计多普勒信号的功率谱密度(PSD)。最后,使用余弦叠加的组件产生多普勒信号,该组件由在心循环上变化的功率谱密度函数调制。该模型产生多普勒血流信号,其特征类似于实际中发现的特性。结果表明,该方法对于在狭窄的血管中模拟来自脉动血流的多普勒超声信号。

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