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Immersion Ultrasonic Reflection Tomography by Annular Array System

机译:环形阵列系统浸入超声反射断层扫描

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Ultrasonic reflection tomography has been proposed for tumor detection in medical care, multiphase flow imaging and material flaw detection in industrial processing. It is a better way than transmission tomography to reconstruct the target shape when the target or the inner component of the target would bring about severe attenuation for ultrasonic propagation. This paper provides the simulation and experimental results of immersion ultrasonic reflection tomography through ellipse algorithm. By reconstruct a series of priori circle targets, the influences of different target locations, different data quantities and different target sizes on the reconstruction image qualities are discussed while the interaction relationships between the 3 influencing factors and detection sensitizing zone of the annular array system are also demonstrated. From the simulation results, annular array system with 80 transducers that is shown in this paper could attain the detection resolution less than 500 μm. An immersion annular array with 16 elements is proposed in this experiment and the ultrasonic transducers which are ring arranged are served as both transmitters and receivers in order to acquire all the data of the sample from 360 degree in the imaginary plane of the ultrasonic beams. The target measured by the real system is a 7mm radius ceramic sphere, demonstrating the image reconstruction ability with limited data by ellipse algorithm.
机译:超声反射断层扫描已经提出用于医疗治疗中的肿瘤检测,工业加工中的多相流动成像和材料缺陷检测。当目标或目标的内部分量将对超声波传播产生严重衰减时,它是比透射断层摄影的更好的方法。本文通过椭圆算法提供浸入超声反射断层扫描的模拟和实验结果。通过重建一系列先验圆目标,讨论了不同目标位置,不同数据量和不同目标大小对重建图像质量的影响,而环形阵列系统的3个影响因素与检测敏化区之间的相互作用关系也是如此展示。从仿真结果,具有80个换能器的环形阵列系统,如本文所示的80个换能器可以获得小于500μm的检测分辨率。在该实验中提出具有16个元件的浸入式环形阵列,并且作为环布置的超声换能器作为发射器和接收器,以便从超声波束的假想平面中从360度获取样品的所有数据。通过真实系统测量的目标是7mm半径陶瓷球体,通过椭圆算法展示了具有有限数据的图像重建能力。

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