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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Investigations of spectral resolution and angle dependency in a 2-D tracking doppler method
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Investigations of spectral resolution and angle dependency in a 2-D tracking doppler method

机译:二维跟踪多普勒方法中光谱分辨率和角度依赖性的研究

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摘要

An important source of error in velocity measurements from conventional pulsed wave (PW) Doppler is the angle used for velocity calibration. Because there are great uncertainties and interobserver variability in the methods used for Doppler angle correction in the clinic today, it is desirable to develop new and more robust methods. In this work, we have investigated how a previously presented method, 2-D tracking Doppler, depends on the tracking angle. A signal model was further developed to include tracking along any angle, providing velocity spectra which showed good agreement with both experimental data and simulations. The full-width at half-maximum (FWHM) bandwidth and the peak value of predicted power spectra were calculated for varying tracking angles. It was shown that the spectra have lowest bandwidth and maximum power when the tracking angle is equal to the beam-to-flow angle. This may facilitate new techniques for velocity calibration, e.g., by manually adjusting the tracking angle, while observing the effect on the spectral display. An in vitro study was performed in which the Doppler angles were predicted by the minimum FWHM and the maximum power of the 2-D tracking Doppler spectra for 3 different flow angles. The estimated Doppler angles had an overall error of 0.24 0; 1; 0.75 0; when using the minimum FWHM. With an in vivo example, it was demonstrated that the 2-D tracking Doppler method is suited for measurements in a patient with carotid stenosis.
机译:传统脉冲波(PW)多普勒测速的重要误差源是速度校准所使用的角度。由于当今临床中用于多普勒角度矫正的方法存在很大的不确定性和观察者之间的差异,因此需要开发新的且更可靠的方法。在这项工作中,我们研究了先前介绍的二维跟踪多普勒方法如何取决于跟踪角度。进一步开发了一个信号模型,以包括沿任何角度的跟踪,从而提供了与实验数据和仿真均显示出良好一致性的速度谱。对于不同的跟踪角度,计算了半最大全宽(FWHM)带宽和预测功率谱的峰值。结果表明,当跟踪角等于束流角时,光谱具有最低的带宽和最大的功率。这可以促进速度校准的新技术,例如,通过手动调节跟踪角,同时观察到对频谱显示的影响。进行了一项体外研究,其中通过3种不同流动角的最小FWHM和2D跟踪多普勒频谱的最大功率来预测多普勒角度。估计的多普勒角度的总误差为0.24 0; 1; 0.75 0;使用最小FWHM时。以体内的例子为例,证明了二维跟踪多普勒方法适用于颈动脉狭窄患者的测量。

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