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A high-frequency and high-frame-rate ultrasound imaging system design on an FPGA evaluation board for capacitive micromachined ultrasonic transducer arrays

机译:用于电容微加工超声换能器阵列的FPGA评估板上的高频高帧速超声成像系统设计

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Dynamic receive beamforming (DRBF) is challenging for field-programmable gate array (FPGA)-based ultrasound (US) imaging because it is computationally intense. Work has been done to either simplify the delay calculation or precalculate the delays and store them on the FPGA. The former sacrifices image quality and the latter is challenged by limited memory resource on the FPGA. In this work, we report on the design of a compact US imaging system for capacitive micromachined ultrasonic transducer (CMUT) arrays implemented on an FPGA evaluation board. The system features high frequency and high frame rate. It transmits ultrasound pulses centered at up to 20 MHz and can receive ultrasound echo signals up to 60 MHz. When working with a 16-element 2.48-mm CMUT array centered at 4.5 MHz, the system can perform conventional phased array (CPA) imaging at 170 FPS from a depth of 2.48 mm to 17.34 mm within a 90° sector. The system features full DRBF for every pixel.
机译:动态接收波束成形(DRBF)对于基于现场可编程门阵列(FPGA)的超声(US)成像具有挑战性,因为它的计算强度很高。已经完成简化延迟计算或预先计算延迟并将其存储在FPGA上的工作。前者牺牲了图像质量,而后者则受到FPGA上有限的存储器资源的挑战。在这项工作中,我们报告了在FPGA评估板上实现的紧凑型美国成像系统的设计,该系统用于电容性微加工超声换能器(CMUT)阵列。该系统具有高频率和高帧率的特点。它可以发射频率高达20 MHz的超声脉冲,并且可以接收频率高达60 MHz的超声回波信号。当使用以4.5 MHz为中心的16元素2.48 mm CMUT阵列工作时,系统可以在90°扇区内从2.48 mm至17.34 mm的深度以170 FPS进行常规相控阵(CPA)成像。该系统为每个像素提供完整的DRBF。

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