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Towards A Pixel-Level Reconfigurable Digital Beamforming Core for Ultrasound Imaging

机译:朝着超声成像的像素级可重新配置数字波束形成核心

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摘要

Ultrasound (US) imaging systems typically employ a single beamforming scheme which is the delay and sum (DAS) beamforming due to its reduced complexity. However, DAS results in images with limited resolution and contrast. The limitations of DAS have been overcome by, delay multiply and sum (DMAS) beamforming, making it especially preferable in cases where finer image details are required in larger depth of scans for an accurate diagnosis. But, DMAS is confined to transducer frequencies where the generated harmonics also fall in the processable frequency range of the US system. However, if US systems could provide the flexibility to reconfigure beamforming considering the restrictions of each beamforming scheme, it is possible to select the best beamforming according to the clinical requirement and system constraints. This work is a fundamental step towards enabling reconfigurable beamforming for on-the-fly selection among the DAS and DMAS beamforming schemes, with low reconfiguration overhead, specifically for each imaging scenario to aid better diagnosis. Two novel architectures are proposed, that reconfigures between DAS and DMAS beamforming as a function of transducer's center frequency with minimum additional computational overhead. The implementation results of the proposed architectures on xc7z010clg400-1 FPGA are reported. The possibilities of pixel-level beamforming reconfigurability, where the different tissue regions are beamformed with either DAS or DMAS are also shown through simulations.
机译:超声(US)成像系统通常采用单个波束形成方案,该方案是由于其降低的复杂性而导致的延迟和和(DAS)波束形成。但是,DAS导致分辨率有限和对比度的图像。在较大扫描深度扫描中需要更精细的图像细节的情况下,延迟乘法和总和(DMA)波束成形的延迟乘法和总和(DMA)波束成形已经克服了DAS的局限性。但是,DMA被限制在传感器频率,其中产生的谐波也属于美国系统的可加工频率范围。然而,如果美国系统可以提供重新配置波束成形的灵活性,考虑每个波束形成方案的限制,可以根据临床要求和系统约束来选择最佳波束形成。这项工作是实现DAS和DMA波束成形方案中的可重新配置的可重配置波束成形的基本步骤,具有低重新配置开销,专门针对每个成像方案来帮助更好地诊断。提出了两种新颖的架构,在DAS和DMAS波束成形之间重新配置,作为传感器中心频率的函数,具有最小额外的计算开销。报道了XC7Z010CLG400-1 FPGA上提出的架构的实现结果。通过模拟还示出了像素级波束成形重新配置的可能性,其中不同的组织区域与DAS或DMA的波束形成。

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