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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A novel beamformer design method for medical ultrasound. Part I: Theory
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A novel beamformer design method for medical ultrasound. Part I: Theory

机译:一种用于医学超声的新型波束形成器设计方法。第一部分:理论

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摘要

The design of transmit and receive aperture weightings is a critical step in the development of ultrasound imaging systems. Current design methods are generally iterative, and consequently time consuming and inexact. We describe a new and general ultrasound beamformer design method, the minimum sum squared error (MSSE) technique. The MSSE technique enables aperture design for arbitrary beam patterns (within fundamental limitations imposed by diffraction). It uses a linear algebra formulation to describe the system point spread function (psf) as a function of the aperture weightings. The sum squared error (SSE) between the system psf and the desired or goal psf is minimized, yielding the optimal aperture weightings. We present detailed analysis for continuous wave (CW) and broadband systems. We also discuss several possible applications of the technique, such as the design of aperture weightings that improve the system depth of field, generate limited diffraction transmit beams, and improve the correlation depth of field in translated aperture system geometries. Simulation results are presented in an accompanying paper.
机译:发射和接收孔径权重的设计是超声成像系统开发中的关键步骤。当前的设计方法通常是迭代的,因此既费时又不精确。我们介绍了一种新的通用超声波束形成器设计方法,即最小和平方误差(MSSE)技术。 MSSE技术可对任意光束图案进行孔径设计(在衍射引起的基本限制内)。它使用线性代数公式来描述系统点扩展函数(psf)与孔径权重的关系。将系统psf与期望或目标psf之间的平方误差(SSE)最小化,从而获得最佳的孔径加权。我们介绍了连续波(CW)和宽带系统的详细分析。我们还将讨论该技术的几种可能的应用,例如孔径权重的设计,这些孔径权重可以改善系统的景深,生成有限的衍射透射光束并改善平移孔径系统几何形状中的相关景深。仿真结果在随附的论文中给出。

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