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使用FOCUS软件包实现快速准确的平面波和彩色多普勒成像。

Fast and Accurate Plane Wave and Color Doppler Imaging with the FOCUS Software Package.

作者信息

Honer Jacob S, McGough Robert J

机构信息

Department of Electrical and Computer Engineering, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Sensors (Basel). 2025 Jul 9;25(14):4276. doi: 10.3390/s25144276.

Abstract

A comprehensive framework for ultrasound imaging simulations is presented. Solutions to an inhomogeneous wave equation are provided, yielding a linear model for characterizing ultrasound propagation and scattering in soft tissue. This simulation approach, which is based upon the fast nearfield method, is implemented in the Fast Object-oriented C++ Ultrasound Simulator (FOCUS) and is extended to a range of imaging modalities, including synthetic aperture, B-mode, plane wave, and color Doppler imaging. The generation of radiofrequency (RF) data and the receive beamforming techniques employed for each imaging modality, along with background on color Doppler imaging, are described. Simulation results demonstrate rapid convergence and lower error rates compared to conventional spatial impulse response methods and Field II, resulting in substantial reductions in computation time. Notably, the framework effectively simulates hundreds of thousands of scatterers without the need for a full three-dimensional (3D) grid, and the inherent randomness in the scatterer distributions produces realistic speckle patterns. A plane wave imaging example, for instance, achieves high fidelity using 100,000 scatterers with five steering angles, and the simulation is completed on a personal computer in a few minutes. Furthermore, by modeling scatterers as moving particles, the simulation framework captures dynamic flow conditions in vascular phantoms for color Doppler imaging. These advances establish FOCUS as a robust, versatile tool for the rapid prototyping, validation, and optimization of both established and novel ultrasound imaging techniques.

摘要

本文提出了一种用于超声成像模拟的综合框架。给出了非均匀波动方程的解,得到了一个用于表征软组织中超声传播和散射的线性模型。这种基于快速近场方法的模拟方法在快速面向对象的C++超声模拟器(FOCUS)中实现,并扩展到一系列成像模式,包括合成孔径、B模式、平面波和彩色多普勒成像。描述了每种成像模式下射频(RF)数据的生成以及所采用的接收波束形成技术,以及彩色多普勒成像的背景知识。模拟结果表明,与传统的空间脉冲响应方法和Field II相比,该方法具有快速收敛性和较低的错误率,从而显著减少了计算时间。值得注意的是,该框架无需完整的三维(3D)网格就能有效地模拟数十万个散射体,并且散射体分布中的固有随机性产生了逼真的散斑图案。例如,一个平面波成像示例使用100,000个散射体和五个转向角实现了高保真度,并且在个人计算机上几分钟内就能完成模拟。此外,通过将散射体建模为移动粒子,该模拟框架能够捕捉血管模型中彩色多普勒成像的动态流动情况。这些进展使FOCUS成为一种强大、通用的工具,可用于现有和新型超声成像技术的快速原型设计、验证和优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f786/12299044/8fd563650be0/sensors-25-04276-g001.jpg

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