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Doppler ultrasound signal spectral response in the measurement of blood flow turbulence caused by stenosis

机译:多普勒超声信号谱响应测量血流湍流引起的狭窄引起的

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摘要

This research work is concerned to the use of a Doppler ultrasound system aiming to study the effect caused in the blood flow by stenotic lesions. In order to accomplish this study, an experimental blood flow phantom was constructed. This is a controlled platform that allows to generate a range of blood flow profiles, and also to produce different degree of stenosis on a testing vessel. The phantom has also been electrically modeled in order to asses the response under conditions both normal and pathological (with stenosis). The flow average velocity is estimated by calculating the Pseudo Instantaneous Mean Frequency (PIMF) of a discrete Doppler ultrasound signal produced with a blood flow phantom. This signal is conditioned, digitized and processed in order to generate a 2-D spectrogram to be displayed and for calculating suitable clinical parameters like flow, pulsatile index and resistance index, among others. A graphical user interface (GUI) has been developed for input, output and set control variables and monitoring the system. The results in this study demonstrate a suitable use of Doppler ultrasound spectral analysis of blood flow in order to evaluate the degree of stenosis in vessels.
机译:本研究工作涉及使用多普勒超声系统,旨在研究通过狭窄病变血流引起的效果。为了实现这项研究,构建了实验性血流幻影。这是一个受控平台,允许产生一系列血流曲线,也可以在测试容器上产生不同程度的狭窄。幻像也被电模型,以便在正常和病理(具有狭窄)的条件下判断反应。通过计算用血流幻影产生的离散多普勒超声信号的伪瞬时平均频率(PIMF)来估计流平均速度。该信号被调节,数字化和处理,以产生待显示的二维频谱图,并用于计算合适的临床参数,如流量,脉动指数和阻力指数等。已经开发了一种图形用户界面(GUI),用于输入,输出和设置控制变量并监控系统。本研究中的结果表明了适当使用多普勒超声波谱分析血流,以评估血管中的狭窄程度。

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