2D Ultrasonic Reflection Tomography by Linear Array Transducer and Wave Reflector

A. Sanpanich, K. Hamamoto, M. Sangworasil, C. Pintavirooj
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引用次数: 6

Abstract

In general, it was known that when the series of an ultrasonic broadband pulse travel through living organ or soft tissue, their reflected projection data can be used to reconstruct a novel tomographic image. Whereas, a data obtain from an ultrasonic tomography in transmission mode is not able to be used for reconstruction a characteristic image of soft tissue which naturally shadowed by a bone or hard tissue. An ultrasonic tomography in reflection mode is realized to be a solution for this problem. However the implementation to identify the projection by using an integrated attenuation coefficient of tissue from the pulsed wave ray path in reflection mode is still more complicated. In this paper, we propose a simulation in 2D of a reflection-mode ultrasonic tomographic system by using the linear array transducer and also a frequency centroid shift method to calculate the projection data. The imaging setup system was enhanced by wave reflecting plate in order to increase an echo wave path. The ultrasound wave paths of our simulation system were intend to focus on the fan beam trajectory which is rather close to a real propagation of the ultrasound wave travelling through soft tissue and ART was used finally as an image reconstruction algorithm. The obtained output shows that our system is more practical and possible toward for using in a clinical trial.
线阵换能器和波反射器的二维超声反射层析成像
一般来说,我们知道当超声波宽带脉冲序列穿过活体器官或软组织时,它们的反射投影数据可以用来重建新的层析图像。然而,在传输模式下从超声断层扫描获得的数据不能用于重建被骨或硬组织自然遮蔽的软组织的特征图像。在反射模式下实现超声层析成像是解决这一问题的方法。然而,利用组织在反射模式下的积分衰减系数从脉冲波路径中识别投影的实现仍然比较复杂。本文采用线阵换能器对反射型超声层析成像系统进行二维仿真,并采用频率质心移位法计算投影数据。利用反射波片对成像设置系统进行增强,以增加回波路径。我们的仿真系统的超声波路径主要集中在扇形波束轨迹上,这与超声波在软组织中的真实传播非常接近,最后使用ART作为图像重建算法。实验结果表明,该系统具有较强的实用性,可用于临床试验。
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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