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Phase aberration correction by bent-ray tracing method for ultrasound computed tomography

机译:超声计算机断层摄影的弯曲射线追踪法校正相差

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摘要

Ultrasound computed tomography (USCT) is a promising technique for breast cancer detection. It can provide three modalities: sound speed image, attenuation image, and reflection image. The reflection image can have high-resolution, but it always be reconstructed using a pre-determined sound speed based on homogeneous assumption, and the mismatch between the pre-determined speed and real speeds of inhomogeneous tissue could result in phase aberration and degrade the image quality and resolution. In this article, we proposed and evaluated to correct phase aberration by bent-ray tracing method using sound speed image of USCT. First, sound speed image of USCT was reconstructed by first arrival picking method, bent-ray tracing method and Simultaneous Algebraic Reconstruction Technique (SART). Second, the propagation time from each element to each pixel of image was calculated by bent-ray tracing method using the sound speed image. Third, scatter-signal-delay-time was calculated and reflection image is reconstructed by using Synthetic Aperture (SA) method. For evaluation, both simulation and experiment validation were conducted. With regard to the simulation, the homogeneous point scatter simulation showed that the phase aberration might increase diameter of point-spread function (PSF) from approximate 1 to 5 mm; the complex-breast-model simulation demonstrated that the proposed method could correct phase aberration and decrease diameter of PSF from about 2 to 1 mm. With regard to the experiment, the results demonstrated that the proposed method could correct phase aberration and improve the image quality of breast phantom.
机译:超声计算机断层扫描(USCT)是一种有前途的乳腺癌检测技术。它可以提供三种模式:声速图像,衰减图像和反射图像。反射图像可以具有高分辨率,但始终使用基于均匀假设的预定声速来重建,并且预定速度与非均匀组织的实际速度之间的不匹配可能会导致相位像差并降低图像质量质量和分辨率。在本文中,我们提出并评估了使用USCT声速图像通过弯曲射线追踪方法校正相位像差的方法。首先,采用先到先采法,弯曲射线追踪法和同时代数重建技术(SART)重建USCT的声速图像。其次,使用声速图像通过弯曲射线追踪法计算从图像的每个元素到图像的每个像素的传播时间。第三,计算散射信号延迟时间,并使用合成孔径(SA)方法重建反射图像。为了进行评估,进行了仿真和实验验证。关于仿真,均质点散射仿真表明,相差可能会使点扩展函数(PSF)的直径从大约1毫米增加到5毫米;复杂乳房模型仿真表明,该方法可以校正相差,并将PSF的直径从2mm减小到1mm。实验结果表明,该方法可以校正相位像差,提高乳腺体模的图像质量。

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