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心血管超声的发展:第1部分:信号处理与仪器设备

Developments in cardiovascular ultrasound: Part 1: Signal processing and instrumentation.

作者信息

Fish P J, Hoskins P R, Moran C, McDicken W N

机构信息

School of Electronic Engineering Science, University of Wales, Bangor, UK.

出版信息

Med Biol Eng Comput. 1997 Nov;35(6):561-9. doi: 10.1007/BF02510961.

Abstract

One of the major contributions to the improvement of spectral Doppler and colour flow imaging instruments has been the development of advanced signal-processing techniques made possible by increasing computing power. Model-based or parametric spectral estimators, time-frequency transforms, station-arising algorithms and spectral width correction techniques have been investigated as possible improvements on the FFT-based estimators currently used for real-time spectral estimation of Doppler signals. In colour flow imaging some improvement on velocity estimation accuracy has been achieved by the use of new algorithms but at the expense of increased computational complexity compared with the conventional autocorrelation method. Polynomial filters have been demonstrated to have some advantages over IIR filters for stationary echo cancellation. Several methods of velocity vector estimation to overcome the problem of angle dependence have been studied, including 2D feature tracking, two and three beam approaches and the use of spectral width in addition to mean frequency. 3D data acquisition and display and Doppler power imaging have also been investigated. The use of harmonic imaging, using the second harmonic generated by encapsulated bubble contrast media, seems promising particularly for imaging slow flow. Parallel image data acquisition using non-sequential scanning or broad beam transmission, followed by simultaneous reception along a number of beams, has been studied to speed up 'real-time' imaging.

摘要

先进信号处理技术的发展得益于计算能力的提升,这对频谱多普勒和彩色血流成像仪器的改进起到了重要作用。基于模型或参数的频谱估计器、时频变换、平稳化算法以及频谱宽度校正技术已被研究,有望改进目前用于多普勒信号实时频谱估计的基于快速傅里叶变换(FFT)的估计器。在彩色血流成像中,通过使用新算法,速度估计精度有所提高,但与传统自相关方法相比,计算复杂度增加。在平稳回波消除方面,多项式滤波器已被证明比无限脉冲响应(IIR)滤波器具有一些优势。为克服角度依赖性问题,研究了几种速度矢量估计方法,包括二维特征跟踪、双束和三束方法以及除平均频率外还利用频谱宽度。三维数据采集与显示以及多普勒能量成像也已被研究。利用封装微泡造影剂产生的二次谐波进行谐波成像,对于慢血流成像似乎很有前景。为加快“实时”成像速度,已研究了使用非顺序扫描或宽波束发射进行并行图像数据采集,随后沿多条波束同时接收的方法。

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