In an ultrasound imaging system, dynamic focusing is crucial in improving the spatial resolution and signal-to-noise ratio. However, the generation of focus'/> The research of compression and generation of high-precision dynamic focusing delay data for ultrasound beamformer
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The research of compression and generation of high-precision dynamic focusing delay data for ultrasound beamformer

机译:超声波束形成器压缩和产生高精度动态聚焦延迟数据的研究

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AbstractIn an ultrasound imaging system, dynamic focusing is crucial in improving the spatial resolution and signal-to-noise ratio. However, the generation of focusing delay data (FDD) requires complex calculations and a large amount of memory. The dynamic focusing system may become extremely complex as the number of focusing channels and the focal depth increase. This paper presents a simplified scheme of a high-precision generator for the FDD in Field-programmable Gate Array (FPGA). First, the original FDD are pre-calculated, quantized, decomposed, and compressed by exploiting the recursive characteristics between focusing channels. Then, the initial value and changing locations of each channel are stored as a reference data set. Finally, the FDD are generated in real time by decompressing the preloaded reference data set during the focusing process. The results indicate that the proposed approach consumes less than l% of the memory space of the original method, which may provide significant resource savings and low hardware power consumption. The proposed method can also be applied to convex or flat transducers array in compact beamformers. Moreover, the focusing accuracy and compression ratio can be flexibly adjusted, and the compression ratio can be further improved when the proposed approach is combined with the dynamic aperture. The proposed approach is contribute to the solution of the problem of the complex and large amount of data in ultrasonic imaging system. It is suitable for designing a specific compact focusing beamformer, particularly for a portable ultrasound imaging system.
机译:<标题>抽象 ara id =“par7”>在超声成像系统中,动态聚焦在提高空间分辨率和信噪比方面至关重要。然而,聚焦延迟数据(FDD)的产生需要复杂的计算和大量存储器。随着聚焦通道的数量和焦深增加,动态聚焦系统可能变得非常复杂。本文介绍了用于现场可编程门阵列(FPGA)中FDD的高精度发生器的简化方案。首先,通过利用聚焦通道之间的递归特性来预先计算,量化,分解和压缩原始FDD。然后,将每个信道的初始值和更改位置存储为参考数据集。最后,通过解压缩在聚焦过程期间的预加载的参考数据集来实时生成FDD。结果表明,所提出的方法消耗了少于L%的原始方法的存储空间,这可以提供显着的资源节省和低硬件功耗。所提出的方法也可以应用于紧凑型波束形成器中的凸形或扁平换能器阵列。此外,可以灵活地调节聚焦精度和压缩比,并且当所提出的方法与动态孔径组合时,可以进一步提高压缩比。所提出的方法有助于解决超声成像系统中复杂和大量数据的问题。它适用于设计特定的紧凑型聚焦波束形成器,特别是对于便携式超声成像系统。

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