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首页> 外文期刊>Ultrasound in Medicine and Biology >An improved spectral width Doppler method for estimating Doppler angles in flows with existence of velocity gradients.
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An improved spectral width Doppler method for estimating Doppler angles in flows with existence of velocity gradients.

机译:一种改进的谱宽多普勒方法,用于估计存在速度梯度的流动中的多普勒角度。

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摘要

Doppler angle (i.e., beam-to-flow angle) is an important parameter for quantitative flow measurements. With known Doppler angles, volumetric flows can be obtained by the mean flow velocity times the cross-section area of the vessel. The differences or changes between prestenotic and poststenotic volumetric flows have been quantified as an indicator for assessing the clinical severity of the stenosis. Therefore, several research groups have dedicated themselves to developing user-independent methods to determine automatically the Doppler angle. Nevertheless, most of these methods were developed for narrow ultrasound beam measurements. For small vessels, where the beam width is a significant fraction of the diameter of the vessel, the effect of velocity gradients plays an important role and should not be ignored in the Doppler angle estimations. Accordingly, this paper is concerned with a method for improving the estimation of Doppler angles from spectral width Doppler (SWD) method, but correcting for velocity-gradient broadening that may arise when the beam has a nonzero width. In our method, Doppler angles were firstly calculated by SWD and then were corrected by an artificial neural network (ANN) method to neutralize the contribution of velocity gradient broadening (VGB). This SWD and ANN conjoint method has been successfully applied to estimate Doppler angles from 50 degrees to 80 degrees for constant flows in 10 mm, 4 mm and 1 mm diameter tubes, whose mean flow velocities were 15.3, 19.9 and 25.5 cm/s, respectively, and the achieved mean absolute errors of the estimated Doppler angles were 1.46 degrees , 1.01 degrees and 1.3 degrees.
机译:多普勒角(即束流角)是定量流量测量的重要参数。利用已知的多普勒角,可以通过将平均流速乘以血管的横截面积来获得体积流量。狭窄前和狭窄后体积流量之间的差异或变化已被量化为评估狭窄临床严重程度的指标。因此,几个研究小组致力于开发独立于用户的方法来自动确定多普勒角度。然而,大多数这些方法是为窄超声束测量而开发的。对于小容器,其束宽是容器直径的很大一部分,速度梯度的影响起着重要作用,在多普勒角度估计中不应忽略。因此,本文涉及一种用于从频谱宽度多普勒(SWD)方法改进多普勒角度估计的方法,但是该方法校正了光束具有非零宽度时可能出现的速度梯度加宽。在我们的方法中,首先通过SWD计算多普勒角,然后通过人工神经网络(ANN)方法校正多普勒角,以抵消速度梯度展宽(VGB)的影响。该SWD和ANN联合方法已成功应用于估计直径为10 mm,4 mm和1 mm的管中恒定流量的50度至80度的多普勒角,其平均流速分别为15.3、19.9和25.5 cm / s ,估计的多普勒角的平均绝对误差为1.46度,1.01度和1.3度。

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