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Higher-frame-rate ultrasound imaging with reduced cross-talk by combining a synthetic aperture and spatial coded excitation

机译:通过将合成孔径和空间编码激发相结合,降低串扰的更高帧频超声成像

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In recent clinical practice of ultrasound imaging, the importance of high-frame-rate imaging is growing. Simultaneous multiple transmission is one way to increase frame rate while maintaining a spatial resolution and signal-to-noise ratio. However, this technique has an inherent issue in that "cross-talk artifacts" appear between the multiple transmitted pulses. In this study, a novel method providing higher-frame-rate ultrasound imaging with reduced cross-talk by combining a synthetic aperture and spatial coded excitation is proposed. In the proposed method, two coded transmission beams are simultaneously excited during beam steering in the lateral direction. Parallel receive beamforming is then performed in the region around individual transmission beams. Decoding is carried out by using two beamformed signals from a region where laterally neighboring transmission beams overlap. All decoded beamformed signals are then synthesized coherently. The proposed method was evaluated using a simulated phantom image under the assumption of imaging with a general sector probe. Results showed that the method achieved twice the frame rate while maintaining image resolution (105%) and reducing cross-talk artifacts from -37 dB to less than -57 dB.
机译:在超声成像的最新临床实践中,高帧速成像的重要性正在增长。同时多次传输是在保持空间分辨率和信噪比的同时提高帧速率的一种方法。然而,该技术具有一个固有的问题,即在多个发射脉冲之间出现“串扰伪像”。在这项研究中,提出了一种通过组合合成孔径和空间编码激励来提供具有降低串扰的更高帧频超声成像的新方法。在所提出的方法中,在横向方向上的波束转向期间,同时激励了两个编码的传输波束。然后在各个传输波束周围的区域中执行并行接收波束成形。通过使用来自横向相邻传输波束重叠的区域的两个波束成形信号来执行解码。然后,所有解码的波束成形信号被相干地合成。在使用普通扇形探头成像的假设下,使用模拟幻像图像对提出的方法进行了评估。结果表明,该方法在保持图像分辨率(105%)并将串扰伪像从-37 dB减少到-57 dB以下的同时,实现了两倍的帧速率。

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