Microelectronics Systems Design Laboratory, Università degli Studi di Firenze, Florence, Italy.
IEEE Trans Ultrason Ferroelectr Freq Control. 2012 Jul;59(7):1378-85. doi: 10.1109/TUFFC.2012.2338.
The availability of programmable and reconfigurable ultrasound (US) research platforms may have a considerable impact on the advancement of ultrasound systems technology; indeed, they allow novel transmission strategies or challenging processing methods to be tested and experimentally refined. In this paper, the ULtrasound Advanced Open Platform (ULA-OP), recently developed in our University laboratory, is shown to be a flexible tool that can be easily adapted to a wide range of applications. Five nonstandard working modalities are illustrated. Vector Doppler and quasi-static elastography applications emphasize the real-time potential and versatility of the system. Flow-mediated dilation, pulse compression, and high-frame-rate imaging highlight the flexibility of data access at different points in the reception chain. For each modality, the role played by the onboard programmable devices is discussed. Experimental results are reported, indicating the relative performance of the system for each application.
可编程和可重构超声(US)研究平台的可用性可能对超声系统技术的进步产生重大影响;事实上,它们允许测试和实验改进新的传输策略或具有挑战性的处理方法。本文展示了最近在我们大学实验室开发的 ULtrasound Advanced Open Platform (ULA-OP) 是一种灵活的工具,可以轻松适应广泛的应用。本文介绍了五种非标准工作模式。矢量多普勒和准静态弹性成像应用强调了系统的实时潜力和多功能性。血流介导的扩张、脉冲压缩和高帧率成像突出了在接收链的不同点访问数据的灵活性。对于每种模式,都讨论了板载可编程设备所扮演的角色。本文报告了实验结果,表明了系统在每种应用中的相对性能。