首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Application of Womersley Model to Reconstruct Pulsatile Flow From Doppler Ultrasound Measurements
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Application of Womersley Model to Reconstruct Pulsatile Flow From Doppler Ultrasound Measurements

机译:Womersley模型在多普勒超声测量中重建脉动流的应用

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摘要

A Womersley model-based assessment of pulsatile rigid-tube flow is presented. Multigate Doppler ultrasound was used to measure axial velocities at many radial locations along a single interrogation beam going through the center of a stiff tube. However, a large impediment to Doppler ultrasound diagnostics and resolution close to the wall is considerable noise due to the presence of the wall-fluid interface as well as many other effects, such as spectral broadening, coherent scattering, time resolution, and Doppler angle uncertainty. Thus, our confidence in measured signals is questionable, especially in the wall vicinity where the important oscillatory shear stresses occur. In order to alleviate known biases and shortcomings of the pulsed Doppler ultrasound measurements we have applied Womersley's laminar axisymmetric rigid-tube approximation to reconstruct velocity profiles over the entire flow domain and specifically close to wall, enabling unambiguous determination of the shear stresses. We employ harmonic analysis of the measured velocity profiles at all or selected trusted tube radial locations over one or more periods. Each of estimated Fourier coefficients has a unique counterpart in the respective pressure gradient component. From ensemble-averaged cross-sectional pressure gradient components we compute velocity profiles, volume flow rate, wall shear stress, and other flow parameters. Estimation of the pressure gradients from spatially resolved pulsed Doppler ultrasound velocity measurements is an added benefit of our reconstruction method. Multigate pulsed Doppler ultrasound scanners offer powerful capabilities to noninvasively and nonintrusively measure velocity profiles for hemodynamic and other fluid flow applications. This flow reconstruction method can also be tailored for use with other flow diagnostic modalities, such as magnetic resonance imaging (MRI) and a wide class of optical methods.
机译:提出了基于沃默斯利模型的脉动刚性管流动评估。多门多普勒超声仪用于测量沿着穿过硬管中心的单个询问光束在许多径向位置处的轴向速度。但是,由于壁-流体界面的存在以及许多其他影响,例如频谱展宽,相干散射,时间分辨率和多普勒角度不确定性,阻碍多普勒超声诊断和靠近壁的分辨率的很大障碍是相当大的噪声。因此,我们对测量信号的信心值得怀疑,尤其是在发生重要的振荡剪切应力的壁附近。为了减轻脉冲多普勒超声测量的已知偏差和缺点,我们采用了沃默斯利的层流轴对称刚性管近似法来重建整个流域(尤其是靠近壁面)的速度剖面,从而能够确定剪切应力。我们对一个或多个周期内在所有或选定的受信任管径向位置处测得的速度分布进行谐波分析。每个估计的傅立叶系数在相应的压力梯度分量中都有一个唯一的对应项。从整体平均横截面压力梯度分量中,我们计算出速度分布图,体积流量,壁切应力和其他流量参数。从空间分辨的脉冲多普勒超声速度测量值估计压力梯度是我们的重建方法的另一个好处。 Multigate脉冲多普勒超声扫描仪具有强大的功能,可以无创和非侵入式地测量血流动力学和其他流体流动应用的速度曲线。该流量重建方法还可以定制为与其他流量诊断模式一起使用,例如磁共振成像(MRI)和各种光学方法。

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