Real-time ultrasonic imaging for multi-layered objects with synthetic aperture focusing technique

Chun Yang, K. Qin, Yazhe Li
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引用次数: 11

Abstract

In this paper, an ultrasonic motion trajectory method is introduced for ultrasonic imaging of multi-layered objects, based on re-interpreting the traditional SAFT in a forward pattern. It adopts scan conversion approaches of lines and circles developed in raster graphics in SAFT so as to avoid the iterative computations in the traditional ultrasonic SAFT with ray tracing. Since this method is suitable for parallel implementation, a GPU-accelerated ultrasonic motion trajectory algorithm is also implemented with CUDA to achieve real-time ultrasonic imaging. Experiments show that the presented motion trajectory method is the most efficient approach for ultrasonic imaging of multi-layered objects among the existing reconstruction techniques, such as the phase shift migration and the traditional method that combines synthetic aperture focusing technique (SAFT) with ray tracing techniques. This new method speeds up the ultrasonic imaging procedure of multi-layer objects by two orders of magnitude with better effects than the traditional method.
基于合成孔径聚焦技术的多层物体实时超声成像
本文介绍了一种用于多层物体超声成像的超声运动轨迹方法,该方法是在对传统SAFT进行正演解释的基础上提出的。它采用了SAFT中光栅图形中线和圆的扫描转换方法,避免了传统超声SAFT中射线追踪的迭代计算。由于该方法适合并行实现,本文还利用CUDA实现了gpu加速的超声运动轨迹算法,实现了超声实时成像。实验表明,在现有的相移偏移和传统的合成孔径聚焦技术(SAFT)与射线追踪技术相结合的重建技术中,所提出的运动轨迹方法是多层物体超声成像最有效的方法。该方法将多层物体的超声成像速度提高了两个数量级,效果优于传统方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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