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级联双极性波的超快超声成像。

Ultrafast Ultrasound Imaging With Cascaded Dual-Polarity Waves.

出版信息

IEEE Trans Med Imaging. 2018 Apr;37(4):906-917. doi: 10.1109/TMI.2017.2781261.

Abstract

Ultrafast ultrasound imaging using plane or diverging waves, instead of focused beams, has advanced greatly the development of novel ultrasound imaging methods for evaluating tissue functions beyond anatomical information. However, the sonographic signal-to-noise ratio (SNR) of ultrafast imaging remains limited due to the lack of transmission focusing, and thus insufficient acoustic energy delivery. We hereby propose a new ultrafast ultrasound imaging methodology with cascaded dual-polarity waves (CDWs), which consists of a pulse train with positive and negative polarities. A new coding scheme and a corresponding linear decoding process were thereby designed to obtain the recovered signals with increased amplitude, thus increasing the SNR without sacrificing the frame rate. The newly designed CDW ultrafast ultrasound imaging technique achieved higher quality B-mode images than coherent plane-wave compounding (CPWC) and multiplane wave (MW) imaging in a calibration phantom, ex vivo pork belly, and in vivo human back muscle. CDW imaging shows a significant improvement in the SNR (10.71 dB versus CPWC and 7.62 dB versus MW), penetration depth (36.94% versus CPWC and 35.14% versus MW), and contrast ratio in deep regions (5.97 dB versus CPWC and 5.05 dB versus MW) without compromising other image quality metrics, such as spatial resolution and frame rate. The enhanced image qualities and ultrafast frame rates offered by CDW imaging beget great potential for various novel imaging applications.

摘要

使用平面波或发散波(而非聚焦波束)进行超快速超声成像是评估组织功能的新型超声成像方法的重要进展,这些方法超越了解剖学信息。然而,由于缺乏传输聚焦,超快速成像的超声信号与噪声比 (SNR) 仍然受到限制,从而导致声能传递不足。我们在此提出了一种新的基于级联双极性波 (CDW) 的超快速超声成像方法,该方法由具有正负极性的脉冲串组成。因此,设计了一种新的编码方案和相应的线性解码过程,以获得具有更高幅度的恢复信号,从而在不牺牲帧率的情况下提高 SNR。在校准体模、离体猪腹和活体人体背部肌肉中,新设计的 CDW 超快速超声成像技术比相干平面波合成 (CPWC) 和多平面波 (MW) 成像获得了更高质量的 B 模式图像。与 CPWC 和 MW 相比,CDW 成像在 SNR(10.71dB 与 CPWC,7.62dB 与 MW)、穿透深度(36.94% 与 CPWC,35.14% 与 MW)和深部对比度(5.97dB 与 CPWC,5.05dB 与 MW)方面均有显著提高,而不会影响其他图像质量指标,如空间分辨率和帧率。CDW 成像提供的增强图像质量和超快速帧率为各种新型成像应用带来了巨大的潜力。

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