Velocity Profile Reconstruction Using Ultrafast Spectral Analysis of Doppler Ultrasound

P. Tortoli, G. Maines, C. Atzeni
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引用次数: 13

Abstract

Abstmct-An ultrasound pulse Doppler system is discussed, capable of performing real time spectral analysis of data originating from a number of sample volumes. The use of a surface-acoustic-wave-based ultrafast spectrum analyzer allows for a large amount of Doppler data to be processed in a time equal to a few tens of microseconds for each equivalent channel. Sonograms comparable to those obtained in single gate-fast Fourier transform-based-Doppler systems can thus be simultaneously presented, showing the velocity distribution in different sample volumes as a function of time. Alternately, the instantaneous velocity profile can be mapped as a function of depth, thus allowing for the possibility of bidimensional imaging. A prototype flowmeter capable of processing Doppler data from 32 range cells in real time is described and preliminary results obtained in virro under simulated flow conditions are presented.
利用超快谱分析重建多普勒超声速度剖面
摘要:讨论了一种超声脉冲多普勒系统,该系统能够对来自多个样本量的数据进行实时光谱分析。使用基于表面声波的超快频谱分析仪,可以在几十微秒的时间内处理每个等效通道的大量多普勒数据。因此,可以同时呈现与基于单门快速傅立叶变换的多普勒系统所获得的超声图相当的超声图,显示不同样品体积中的速度分布作为时间的函数。或者,瞬时速度剖面可以作为深度的函数进行映射,从而允许二维成像的可能性。描述了一种能够实时处理32个量程单元多普勒数据的原型流量计,并给出了在模拟流动条件下在virro中获得的初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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