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脉冲反转多普勒:一种检测微泡造影剂非线性回波的新方法。

Pulse inversion Doppler: a new method for detecting nonlinear echoes from microbubble contrast agents.

作者信息

Simpson D H, Chin C T, Burns P N

机构信息

Dept. of Med. Biophys., Toronto Univ., Ont, Canada M4N 3M5.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1999;46(2):372-82. doi: 10.1109/58.753026.

Abstract

A novel technique for the selective detection of ultrasound contrast agents, called pulse inversion Doppler, has been developed. In this technique, a conventional Doppler or color Doppler pulse sequence is modified by inverting every second transmit pulse. Either conventional or harmonic Doppler processing is then performed on the received echoes. In the resulting Doppler spectra, Doppler shifts from linear and nonlinear scattering are separated into two distinct regions that can be analyzed separately or combined to estimate the ratio of nonlinear to linear scattering from a region of tissue. The maximum Doppler shift that can be detected is 1/2 the normal Nyquist limit. This has the advantage over conventional harmonic Doppler that it can function over the entire bandwidth of the echo signal, thus achieving superior spatial resolution in the Doppler image. In vitro measurements comparing flowing agent and cellulose particles suggest that pulse inversion Doppler can provide 3 to 10 dB more agent to tissue contrast than harmonic imaging with similar pulses. Similar measurements suggest that broadband pulse inversion Doppler can provide up to 16 dB more contrast than broadband conventional Doppler. Nonlinear propagation effects limit the maximum contrast obtainable with both harmonic and pulse inversion Doppler techniques.

摘要

一种用于选择性检测超声造影剂的新技术——脉冲反转多普勒已被开发出来。在这项技术中,通过每隔一个发射脉冲进行反转来修改传统的多普勒或彩色多普勒脉冲序列。然后对接收到的回波进行传统或谐波多普勒处理。在得到的多普勒频谱中,来自线性和非线性散射的多普勒频移被分离到两个不同的区域,可以分别进行分析或组合起来以估计来自组织区域的非线性与线性散射的比率。能够检测到的最大多普勒频移是正常奈奎斯特极限的1/2。与传统谐波多普勒相比,这具有能够在回波信号的整个带宽上起作用的优势,从而在多普勒图像中实现更高的空间分辨率。体外测量比较流动的造影剂和纤维素颗粒表明,与使用类似脉冲的谐波成像相比,脉冲反转多普勒能够提供比组织对比度高3至10分贝的造影剂。类似的测量表明,宽带脉冲反转多普勒能够比宽带传统多普勒提供高达16分贝的更高对比度。非线性传播效应限制了谐波和脉冲反转多普勒技术能够获得的最大对比度。

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