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An architecture and implementation of real-time synthetic aperture compounding with SARUS

机译:SARUS实时合成孔径合成的体系结构和实现

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Synthetic aperture and compounding are imaging techniques for increasing the resolution and contrast of ultrasound images. Both techniques are computationally intensive, and combined they require approximately two orders of magnitude more lines to be beamformed per second compared to conventional B-mode imaging with similar frame rates. In this paper, an implementation of a system capable of synthetic aperture compound imaging in real-time producing more than 325 million complex beamformed samples per second is presented. This corresponds to synthetic aperture compound imaging at 13 frames per second with 64 emissions and 3 compound angles with 128 lines each. The beamformer is implemented in the SARUS research scanner which consists of 320 Virtex4 FPGAs and has 1024 independent transmit and receive channels. The beamformer is partitioned across 64 FPGAs and runs at 87.5 MHz while consuming 76% of the available logic resources in each FPGA. The beamformed images have resolution similar to offline processed images.
机译:合成孔径和复合是提高超声图像分辨率和对比度的成像技术。与具有相似帧速率的常规B模式成像相比,这两种技术都需要大量的计算,并且结合起来,它们每秒需要多将近两个数量级的光束形成波束。在本文中,提出了一种能够实时合成孔径复合成像的系统的实现,该系统每秒可产生超过3.25亿个复杂波束成形样本。这对应于以13帧/秒,64个发射和3个复合角(每个128行)的合成孔径复合成像。波束形成器在SARUS研究扫描仪中实现,该扫描仪由320个Virtex4 FPGA组成,并具有1024个独立的发送和接收通道。波束形成器被划分为64个FPGA,并以87.5 MHz运行,同时消耗每个FPGA中76%的可用逻辑资源。波束形成的图像的分辨率类似于脱机处理的图像。

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