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Evaluation of high-speed 3D imaging system which utilizes coded wavefront

机译:利用编码波前的高速3D成像系统评估

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We have developed a three dimensional (3D) imaging system which utilizes a combination of a sparse two dimensional (2D) array, the synthetic aperture focusing technique, and coded excitation of a solution for high speed 3D ultrasound imaging. A 2 MHz 40 x 40 array of PZT elements was fabricated with a conventional dice-and-fill process. A sparse 2D array was fabricated by choosing 64 transmitters and 128 receivers from 1600 elements of the array. A data acquisition system including 64-bit digital pattern generator, relay multiplexers, and a 32-channel analog-to-digital converter (ADC) was attached to the developed transducer array. Using this system, 3D images were successfully obtained for the standard ultrasound phantoms with 32 transmitters and 128 receivers. 3D images of a thick piece of pork were also obtained. Computer simulations and experiments were carried out to evaluate the imaging system quantitatively.
机译:我们开发了一种三维(3D)成像系统,其利用稀疏二维(2D)阵列,合成孔径聚焦技术的组合,用于高速3D超声成像的解决方案的合成孔径聚焦技术和编码激励。用常规的骰子和填充过程制造2MHz 40×40阵列的PZT元素。通过从阵列的1600个元件中选择64个变送器和128个接收器来制造稀疏的2D阵列。数据采集​​系统包括64位数字图案发生器,继电器多路复用器和32通道模数转换器(ADC)连接到开发的换能器阵列。使用该系统,使用32个发射机和128个接收器成功获得3D图像。还获得了一块厚猪肉的3D图像。进行计算机仿真和实验以定量评估成像系统。

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