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Breast imaging with time-reversed ultrasound

机译:反向超声乳腺成像

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摘要

Ultrasonic imaging has the potential to enhance our capability to detect and diagnose breast cancers, but its imaging quality and resolution need to be significantly improved. We make use of the principle of the time-reversal mirror to develop an image-reconstruction method for ultrasonic breast imaging. It reconstructs images of scatterers (e.g., tumors) that generate/scatter ultrasonic waves by backpropagating measured ultrasonic signals into a heterogeneous breast model on computers using the principle of time-reversal mirror. We use solutions of the (two-way) full wave equation and one-way wave equation in heterogeneous media for backpropagation. We found that the one-way wave-equation-based imaging method can produce higher-resolution images than the two-way propagation-based imaging method when the data acquisition aperture is limited (for a linear transducer array). With a full aperture, our imaging results demonstrate that imaging with time-reversed ultrasound can produce high-quality images of the breast.
机译:超声成像有可能增强我们检测和诊断乳腺癌的能力,但需要显着提高成像质量和分辨率。我们利用时间反转镜的原理来开发超声乳房成像的图像重建方法。它通过使用时间反转镜原理在计算机上将传播的超声信号反向传播到异质乳房模型中,从而重建生成/散射超声波的散射体(例如肿瘤)的图像。我们在异质介质中使用(双向)全波方程和单向波方程的解进行反向传播。我们发现,当数据采集孔径受限时(对于线性换能器阵列),基于单向波方程的成像方法比基于双向传播的成像方法可以产生更高的分辨率图像。在全开光圈下,我们的成像结果表明,使用时间反向超声成像可以产生高质量的乳房图像。

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