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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Two-Stage Beamforming for Phased Array Imaging Using the Fast Hankel Transform
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Two-Stage Beamforming for Phased Array Imaging Using the Fast Hankel Transform

机译:使用快速汉克尔变换进行相控阵成像的两阶段波束形成

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摘要

An ultrasound scan generates a huge amount of data. To form an image, this data has to be transferred to the imaging system. This is an issue for applications where the data transfer capacity is limited such as hand-held systems, wireless probes, and miniaturized array probes. Two-stage beamforming methods can be used to significantly reduce the data transfer requirements. In the first stage, which is applied in-probe, the amount of data is reduced from channel to scanline data. In the imaging system, the data are then beamformed to obtain images, which are synthetically focused over the entire image. Currently, two approaches exist for the second stage. The first approach is a time-of-flight (TOF) approach called synthetic aperture sequential beamforming (SASB), which has been developed for both linear and phased arrays. SASB does, however, introduce artifacts in the image that can be reduced by tapering the first-stage scanlines at the cost of lateral resolution. The second approach is based on the wave equation, but a computationally efficient method for phased arrays that is producing sector scan data is lacking. Here, we propose an algorithm that uses the fast Hankel transform to obtain a fast algorithm. The imaging performance of this method is evaluated with simulations and experiments. Compared with PSASB, which is an adaption of SASB for phased arrays, our method requires a similar amount of operations to construct the entire image and there is no tradeoff between resolution and artifacts. These results show the advantage of using the wave equation instead of a TOF approach.
机译:超声波扫描会生成大量数据。为了形成图像,该数据必须被传送到成像系统。对于手持式系统,无线探针和小型阵列探针等数据传输能力受到限制的应用程序,这是一个问题。两阶段波束成形方法可用于显着降低数据传输要求。在探针内应用的第一阶段,数据量从通道数据减少到扫描线数据。然后在成像系统中,对数据进行波束成形以获得图像,然后将这些图像综合聚焦在整个图像上。当前,第二阶段存在两种方法。第一种方法是称为合成孔径顺序波束形成(SASB)的飞行时间(TOF)方法,该方法已针对线性阵列和相控阵开发。但是,SASB确实在图像中引入了伪影,可以通过以横向分辨率为代价逐渐缩小第一级扫描线来减少伪影。第二种方法是基于波动方程的,但是缺少一种计算有效的方法来生成扇区扫描数据的相控阵。在这里,我们提出一种使用快速汉克尔变换获得快速算法的算法。通过仿真和实验评估了该方法的成像性能。与PSASB相比,后者是SASB的相控阵的改编,我们的方法需要类似的操作量来构建整个图像,并且在分辨率和伪像之间没有权衡取舍。这些结果表明使用波动方程代替TOF方法的优势。

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    Delft Univ Technol, Dept Imaging Phys, Lab Acoust Wavefield Imaging, NL-2628 CJ Delft, Netherlands;

    Delft Univ Technol, Dept Imaging Phys, Lab Acoust Wavefield Imaging, NL-2628 CJ Delft, Netherlands;

    Delft Univ Technol, Dept Imaging Phys, Lab Acoust Wavefield Imaging, NL-2628 CJ Delft, Netherlands|Univ Med Ctr Rotterdam, Erasmus Med Ctr, Dept Biomed Engn, Ctr Thorax, NL-3000 CA Rotterdam, Netherlands;

    Univ Med Ctr Rotterdam, Erasmus Med Ctr, Dept Biomed Engn, Ctr Thorax, NL-3000 CA Rotterdam, Netherlands;

    Delft Univ Technol, Dept Imaging Phys, Lab Acoust Wavefield Imaging, NL-2628 CJ Delft, Netherlands|Univ Med Ctr Rotterdam, Erasmus Med Ctr, Dept Biomed Engn, Ctr Thorax, NL-3000 CA Rotterdam, Netherlands;

    Delft Univ Technol, Dept Imaging Phys, Lab Acoust Wavefield Imaging, NL-2628 CJ Delft, Netherlands|Univ Med Ctr Rotterdam, Erasmus Med Ctr, Dept Biomed Engn, Ctr Thorax, NL-3000 CA Rotterdam, Netherlands;

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  • 正文语种 eng
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  • 关键词

    Migration; phased array; synthetic aperture; two-stage beamforming; ultrasound imaging;

    机译:迁移;相控阵;合成孔径;两阶段波束形成;超声成像;

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