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Development of a real-time, high-frequency ultrasound digital beamformer for high-frequency linear array transducers

机译:开发用于高频线性阵列换能器的实时,高频超声数字波束形成器

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A real-time digital beamformer for high-frequency ( >20 MHz) linear ultrasonic arrays has been developed. The system can handle up to 64-element linear array transducers and excite 16 channels and receive simultaneously at 100 MHz sampling frequency with 8-bit precision. Radio frequency (RF) signals are digitized, delayed, and summed through a real-time digital beamformer, which is implanted using a field programmable gate array (FPGA). Using fractional delay filters, fine delays as small as 2 ns can be implemented. A frame rate of 30 frames per second is achieved. Wire phantom (20 /spl mu/m tungsten) images were obtained and -6 dB axial and lateral widths were measured. The results showed that, using a 30 MHz, 48-element array with a pitch of 100 /spl mu/m produced a -6 dB width of 68 /spl mu/m in the axial and 370 /spl mu/m in the lateral direction at 6.4 mm range. Images from an excised rabbit eye sample also were acquired, and fine anatomical structures, such as the cornea and lens, were resolved.
机译:已经开发出一种用于高频(> 20 MHz)线性超声阵列的实时数字波束形成器。该系统可以处理多达64个元素的线性阵列换能器,并激发16个通道,并以100位采样频率以8位精度同时接收。射频(RF)信号通过实时数字波束形成器进行数字化,延迟和求和,实时数字波束形成器使用现场可编程门阵列(FPGA)植入。使用分数延迟滤波器,可以实现小至2 ns的精细延迟。达到每秒30帧的帧速率。获得了导线幻影(20 / spl mu / m钨丝)图像,并测量了-6 dB的轴向和横向宽度。结果表明,使用间距为100 / spl mu / m的30 MHz,48元素阵列,轴向上的-6 dB宽度为68 / spl mu / m,横向上为370 / spl mu / m。方向在6.4毫米范围内。还获得了从切除的兔眼样品中获得的图像,并解析了精细的解剖结构,例如角膜和晶状体。

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