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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A volumetric CMUT-based ultrasound imaging system simulator with integrated reception and ;C;-beamforming electronics models
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A volumetric CMUT-based ultrasound imaging system simulator with integrated reception and ;C;-beamforming electronics models

机译:具有集成接收和; C;波束形成电子模型的基于CMUT的体积超声成像系统模拟器

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摘要

In modern ultrasound imaging devices, two-dimensional probes and electronic scanning allow volumetric imaging of anatomical structures. When dealing with the design of such complex 3-D ultrasound (US) systems, as the number of transducers and channels dramatically increases, new challenges concerning the integration of electronics and the implementation of smart micro-beamforming strategies arise. Hence, the possibility to predict the behavior of the whole system is mandatory. In this paper, we propose and describe an advanced simulation tool for ultrasound system modeling and simulation, which conjugates the US propagation and scattering, signal transduction, electronic signal conditioning, and beamforming in a single environment. In particular, we present the architecture and model of an existing 16-channel integrated receiver, which includes an amplification and micro-beamforming stage, and validate it by comparison with circuit simulations. The developed model is then used in conjunction with the transducer and US field models to perform a system simulation, aimed at estimating the performance of an example 3-D US imaging system that uses a capacitive micromachined ultrasonic transducer (CMUT) 2-D phased-array coupled to the modeled reception front-end. Results of point spread function (PSF) calculations, as well as synthetic imaging of a virtual phantom, show that this tool is actually able to model the complete US image reconstruction process, and that it could be used to quickly provide valuable system-level feedback for an optimized tuning of electronic design parameters.
机译:在现代超声成像设备中,二维探头和电子扫描允许对解剖结构进行体积成像。当处理这种复杂的3D超声(US)系统的设计时,随着换能器和通道数量的急剧增加,出现了有关电子集成和智能微波束形成策略实施的新挑战。因此,预测整个系统行为的可能性是强制性的。在本文中,我们提出并描述了一种用于超声系统建模和仿真的高级仿真工具,该工具将美国的传播和散射,信号转导,电子信号调节和波束形成结合在一个环境中。特别是,我们介绍了现有的16通道集成接收器的体系结构和模型,其中包括放大和微波束形成阶段,并通过与电路仿真进行比较来对其进行验证。然后,将开发的模型与换能器和US场模型结合使用以执行系统仿真,旨在评估使用电容式微加工超声换能器(CMUT)2-D相控的示例3-D US成像系统的性能阵列耦合到建模的接收前端。点扩散函数(PSF)计算的结果以及虚拟体模的合成成像表明,该工具实际上能够对完整的美国图像重建过程进行建模,并且可以用来快速提供有价值的系统级反馈用于优化电子设计参数。

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