Poots J K, Johnston K W, Cobbold R S, Kassam M
Ultrasound Med Biol. 1986 Feb;12(2):125-33. doi: 10.1016/0301-5629(86)90017-7.
The methods and results of a study to determine the accuracy of continuous wave (CW) Doppler spectral recordings by comparison to the spectra derived from the flow profiles photographed simultaneously in a pulsatile flow visualization model are reported in this paper. A pulsatile pump produced a flow velocity waveform, similar to that seen in the human femoral artery, in a quartz glass tube. The velocity profiles, which were made visible by using a photochromic dye/laser technique, were photographed, and at the same time the instantaneous Doppler spectra were recorded. A comparison of the Doppler data and the photographed profiles gave the following results. The Doppler spectrograms and those reconstructed from the flow visualization data were quite similar. Excellent agreement was observed between the instantaneous maximum and mean Doppler waveforms. Individual spectra showed some differences and these differences were quantified by the novel application of certain statistical shape descriptor coefficients that are based on the estimation of the higher order moments of the spectra. The Doppler spectra are generally more skewed towards higher frequencies, narrower, and more peaked than the flow visualization spectra. Analysis of the assumptions and various sources of error lead to the conclusion that the differences were probably caused by ultrasound beam nonuniformity and the effects of refraction, causing a reduction of the beam field response at the tube edges. It is concluded that provided certain precautions are taken in the measurement technique, the CW Doppler ultrasound spectra fairly accurately represent the true velocity profile.
本文报告了一项研究的方法和结果,该研究通过与在脉动流可视化模型中同时拍摄的流型所得到的频谱进行比较,来确定连续波(CW)多普勒频谱记录的准确性。一个脉动泵在石英玻璃管中产生了类似于人体股动脉中所见的流速波形。利用光致变色染料/激光技术使流速剖面可见,对其进行拍照,同时记录瞬时多普勒频谱。多普勒数据与拍摄的剖面比较得出以下结果。多普勒频谱图与从流可视化数据重建的频谱图非常相似。在瞬时最大和平均多普勒波形之间观察到了极好的一致性。个别频谱显示出一些差异,这些差异通过基于频谱高阶矩估计的某些统计形状描述符系数的新应用进行了量化。与流可视化频谱相比,多普勒频谱通常更偏向高频、更窄且峰值更高。对假设和各种误差源的分析得出结论,这些差异可能是由超声束不均匀性和折射效应引起的,导致管边缘处的束场响应降低。得出的结论是,只要在测量技术中采取某些预防措施,连续波多普勒超声频谱就能相当准确地反映真实的流速剖面。