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使用空间正交法的超声多维速度估计

Multi-dimensional velocity estimation with ultrasound using spatial quadrature.

作者信息

Aderson M E

机构信息

Dept. of Biomed. Eng., Duke Univ., Durham, NC.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1998;45(3):852-61. doi: 10.1109/58.677757.

Abstract

Conventional ultrasonic motion or flow velocity estimation is limited to the axial velocity component. A novel technique, called "spatial quadrature," for the simultaneous estimation of axial and lateral velocity components is introduced. This technique utilizes even and odd spatial weightings of the point spread function that have a quandrature relationship. These weightings produce modulation in the received echo that can be decoded to quantify lateral motion. This estimator can be implemented for two-dimensional velocity estimation with a conventional transducer array and medical ultrasound scanner, preferably one with parallel receive processing. The technique also can be extended to three-dimensional velocity estimation given an appropriate 2-D transducer and scanner architecture. Discussed are space and frequency domain descriptions of this estimator in the context of a brief overview of 2-D flow estimation methods, including analyses characterizing the performance envelope of this estimator. In addition, the application of this technique in CW and PW regimes, and with both radio frequency and baseband quadrature (I- and-Q) data, are discussed. Phantom studies demonstrate spatial quadrature in 2-D using a clinical scanner.

摘要

传统的超声运动或流速估计仅限于轴向速度分量。本文介绍了一种名为“空间正交”的新技术,用于同时估计轴向和横向速度分量。该技术利用具有正交关系的点扩散函数的偶数和奇数空间加权。这些加权在接收到的回波中产生调制,可对其进行解码以量化横向运动。该估计器可通过传统的换能器阵列和医学超声扫描仪实现二维速度估计,最好是具有并行接收处理功能的扫描仪。给定适当的二维换能器和扫描仪架构,该技术还可扩展到三维速度估计。在简要概述二维流估计方法的背景下,讨论了该估计器的空间和频域描述,包括表征该估计器性能范围的分析。此外,还讨论了该技术在连续波(CW)和脉冲波(PW)模式下以及在射频和基带正交(I和Q)数据中的应用。体模研究使用临床扫描仪展示了二维空间正交。

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