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频谱宽度多普勒在脉动血流测量中的应用。

Implementation of spectral width Doppler in pulsatile flow measurements.

作者信息

Lee B R, Chiang H K, Chou Y H, Kuo C D, Wang J H, Lee S K

机构信息

Institute of Biomedical Engineering, National Yang-Ming University, Taipei, Taiwan.

出版信息

Ultrasound Med Biol. 1999 Oct;25(8):1221-7. doi: 10.1016/s0301-5629(99)00083-6.

Abstract

In this paper, we present an automatic beam-vector (Doppler) angle and flow velocity measurement method and implement it in pulsatile flow measurements using a clinical Doppler ultrasound system. In current clinical Doppler ultrasound flow velocity measurements, the axis of the blood vessel needs to be set manually on the B-scan image to enable the estimation of the beam-vector angle and the beam-vector angle corrected flow velocity (the actual flow velocity). In this study, an annular array transducer was used to generate a conical-shaped and symmetrically focused ultrasound beam to measure the flow velocity vectors parallel and perpendicular to the ultrasound beam axis. The beam-vector angle and flow velocity is calculated from the mode frequency (f(d)) and the maximum Doppler frequency (f(max)) of the Doppler spectrum. We develop a spectrum normalization algorithm to enable the Doppler spectrum averaging using the spectra obtained within a single cardiac cycle. The Doppler spectrum averaging process reduces the noise level in the Doppler spectrum and also enables the calculation of the beam-vector angle and flow velocity for pulsatile flows to be measured. We have verified the measurement method in vivo over a wide range of angles, from 52 degrees to 80 degrees, and the standard deviations of the measured beam-vector angles and flow velocities in the carotid artery are lower than 2.2 degrees and 12 cm/s (about 13.3%), respectively.

摘要

在本文中,我们提出了一种自动波束矢量(多普勒)角度和流速测量方法,并使用临床多普勒超声系统在脉动流测量中实现了该方法。在当前的临床多普勒超声流速测量中,需要在B扫描图像上手动设置血管轴线,以便估计波束矢量角度和经波束矢量角度校正的流速(实际流速)。在本研究中,使用环形阵列换能器生成锥形且对称聚焦的超声束,以测量与超声束轴平行和垂直的流速矢量。波束矢量角度和流速由多普勒频谱的模态频率(f(d))和最大多普勒频率(f(max))计算得出。我们开发了一种频谱归一化算法,以便使用在单个心动周期内获得的频谱进行多普勒频谱平均。多普勒频谱平均过程降低了多普勒频谱中的噪声水平,还能够计算待测量的脉动流的波束矢量角度和流速。我们已经在体内从52度到80度的广泛角度范围内验证了该测量方法,并且在颈动脉中测量的波束矢量角度和流速的标准偏差分别低于2.2度和12厘米/秒(约13.3%)。

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