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Multi-channel pre-beamformed data acquisition system for research on advanced ultrasound imaging methods

机译:多通道预波束形成数据采集系统,用于研究先进的超声成像方法

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摘要

The lack of open access to the pre-beamformed data of an ultrasound scanner has limited the research of novel imaging methods to a few privileged laboratories. To address this need, we have developed a pre-beamformed data acquisition (DAQ) system that can collect data over 128 array elements in parallel from the Ultrasonix series of research-purpose ultrasound scanners. Our DAQ system comprises three system-level blocks: 1) a connector board that interfaces with the array probe and the scanner through a probe connector port; 2) a main board that triggers DAQ and controls data transfer to a computer; and 3) four receiver boards that are each responsible for acquiring 32 channels of digitized raw data and storing them to the on-board memory. This system can acquire pre-beamformed data with 12-bit resolution when using a 40-MHz sampling rate. It houses a 16 GB RAM buffer that is sufficient to store 128 channels of pre-beamformed data for 8000 to 25 000 transmit firings, depending on imaging depth; corresponding to nearly a 2-s period in typical imaging setups. Following the acquisition, the data can be transferred through a USB 2.0 link to a computer for offline processing and analysis. To evaluate the feasibility of using the DAQ system for advanced imaging research, two proof-of-concept investigations have been conducted on beamforming and plane-wave B-flow imaging. Results show that adaptive beamforming algorithms such as the minimum variance approach can generate sharper images of a wire cross-section whose diameter is equal to the imaging wavelength (150 μm in our example). Also, planewave B-flow imaging can provide more consistent visualization of blood speckle movement given the higher temporal resolution of this imaging approach (2500 fps in our example). © 2012 IEEE.
机译:缺乏对超声扫描仪的预先波束形成的数据的开放访问,已将新颖的成像方法的研究限制在少数特权实验室中。为了满足这一需求,我们开发了一种预束状数据采集(DAQ)系统,该系统可以并行地从Ultrasonix系列研究型超声扫描仪收集128个阵列元素上的数据。我们的DAQ系统包括三个系统级模块:1)连接板,通过探针连接器端口与阵列探针和扫描仪接口; 2)触发DAQ并控制数据到计算机传输的主板; 3)四个接收器板,每个接收器板负责获取32个数字化原始数据通道并将其存储到板载存储器中。当使用40 MHz采样率时,该系统可以12位分辨率获取预波束形成的数据。它具有一个16 GB的RAM缓冲区,该缓冲区足以存储128个通道的预波束形成数据,以进行8000至25000次发射触发,具体取决于成像深度;对应于典型成像设置中将近2 s的周期。采集之后,可以通过USB 2.0链接将数据传输到计算机以进行脱机处理和分析。为了评估使用DAQ系统进行高级成像研究的可行性,已经对波束形成和平面波B流成像进行了两个概念验证研究。结果表明,诸如最小方差方法之类的自适应波束成形算法可以生成直径等于成像波长(本例中为150μm)的导线横截面的清晰图像。同样,鉴于这种成像方法的时间分辨率更高(在我们的示例中为2500 fps),平面波B流成像可以提供更一致的血斑运动可视化。 ©2012 IEEE。

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