Real-time 3D image reconstruction of a 24×24 row-column addressing array: from raw data to image

Chunyu Li, Jiali Yang, Xu Li, Xiaoli Zhong, J. Song, Mingyue Ding, M. Yuchi
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引用次数: 3

Abstract

This paper presents a work of real-time 3-D image reconstruction for a 7.5-MHz, 24×24 row-column addressing array transducer. The transducer works with a predesigned transmit/receive module. After the raw data are captured by the NI PXIe data acquisition (DAQ) module, the following processing procedures are performed: delay and sum (DAS), base-line calibration, envelope detection, logarithm compression, down-sampling, gray scale mapping and 3-D display. These procedures are optimized for obtaining real-time 3-D images. Fixed-point focusing scheme is applied in delay and sum (DAS) to obtain line data from channel data. Zero-phase high-pass filter is used to calibrate the base-line shift of echo. The classical Hilbert transformation is adopted to detect the envelopes of echo. Logarithm compression is implemented to enlarge the weak signals and narrow the gap from the strong ones. Down-sampling reduces the amount of data to improve the processing speed. Linear gray scale mapping is introduced that the weakest signal is mapped to 0 and the strongest signal 255. The real-time 3-D images are displayed with multi-planar mode, which shows three orthogonal sections (vertical section, coronal section, transverse section). A trigger signal is sent from the transmit/receive module to the DAQ module at the start of each volume data generation to ensure synchronization between these two modules. All procedures, include data acquisition (DAQ), signal processing and image display, are programmed on the platform of LabVIEW. 675MB raw echo data are acquired in one minute to generate 24×24×48, 27fps 3-D images. The experiment on the strong reflection object (aluminum slice) shows the feasibility of the whole process from raw data to real-time 3-D images.
实时三维图像重建24×24行-列寻址数组:从原始数据到图像
本文介绍了一种7.5 mhz 24×24行列寻址阵列传感器的实时三维图像重建工作。换能器与预先设计的发送/接收模块一起工作。NI PXIe数据采集(DAQ)模块采集原始数据后,进行延迟和(DAS)、基线校准、包络检测、对数压缩、下采样、灰度映射和三维显示等处理程序。这些程序为获得实时三维图像进行了优化。在延迟求和(DAS)中采用定点聚焦方案从信道数据中获取线路数据。采用零相高通滤波器对回波的基线位移进行校正。采用经典的希尔伯特变换检测回波包络。采用对数压缩来放大弱信号,缩小与强信号的差距。下采样减少了数据量,从而提高了处理速度。引入线性灰度映射,将最弱的信号映射为0,最强的信号映射为255。实时三维图像采用多平面模式显示,显示3个正交切片(纵切面、冠状面、横切面)。在每个卷数据生成开始时,从发送/接收模块向DAQ模块发送一个触发信号,以确保这两个模块之间的同步。数据采集、信号处理、图像显示等程序均在LabVIEW平台上完成。在一分钟内获取675MB原始回波数据,生成24×24×48, 27fps的3d图像。在强反射物体(铝片)上的实验证明了从原始数据到实时三维图像全过程的可行性。
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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