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基于 ULA-OP256 的高 PRF 多线向量多普勒的虚拟实时处理。

Virtual Real-Time for High PRF Multiline Vector Doppler on ULA-OP 256.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Mar;68(3):624-631. doi: 10.1109/TUFFC.2020.3017940. Epub 2021 Feb 25.

Abstract

The recent development of high-frame-rate (HFR) imaging/Doppler methods based on the transmission of plane or diverging waves has proposed new challenges to echographic data management and display. Due to the huge amount of data that need to be processed at very high speed, the pulse repetition frequency (PRF) is typically limited to hundreds hertz or few kilohertz. In Doppler applications, a PRF limitation may result unacceptable since it inherently translates to a corresponding limitation in the maximum detectable velocity. In this article, the ULA-OP 256 implementation of a novel ultrasound modality, called virtual real-time (VRT), is described. First, for a given HFR RT modality, the scanner displays the processed results while saving channel data into an internal buffer. Then, ULA-OP 256 switches to VRT mode, according to which the raw data stored in the buffer are immediately reprocessed by the same hardware used in RT. In the two phases, the ULA-OP 256 calculation power can be differently distributed to increase the acquisition frame rate or the quality of processing results. VRT was here used to extend the PRF limit in a multiline vector Doppler (MLVD) application. In RT, the PRF was maximized at the expense of the display quality; in VRT, data were reprocessed at a lower rate in a high-quality display format, which provides more detailed flow information. Experiments are reported in which the MLVD technique is shown capable of working at 16-kHz PRF, so that flow jet velocities higher up to 3 m/s can be detected.

摘要

基于平面波或发散波传输的高帧率 (HFR) 成像/多普勒方法的最新发展,对超声数据管理和显示提出了新的挑战。由于需要以非常高的速度处理大量数据,脉冲重复频率 (PRF) 通常限制在几百赫兹或几千赫兹。在多普勒应用中,PRF 限制可能是不可接受的,因为它本质上意味着最大可检测速度的相应限制。本文描述了一种称为虚拟实时 (VRT) 的新型超声模式的 ULA-OP 256 实现。首先,对于给定的 HFR RT 模式,扫描仪在保存通道数据到内部缓冲区的同时显示处理结果。然后,ULA-OP 256 根据 VRT 模式切换,其中缓冲区中存储的原始数据立即由 RT 中使用的相同硬件重新处理。在这两个阶段,ULA-OP 256 的计算能力可以以不同的方式分配,以提高采集帧率或处理结果的质量。VRT 用于扩展多线向量多普勒 (MLVD) 应用中的 PRF 限制。在 RT 中,以牺牲显示质量为代价最大化 PRF;在 VRT 中,以较低的速率以高质量显示格式重新处理数据,从而提供更详细的流信息。报告了实验结果,表明 MLVD 技术能够以 16 kHz 的 PRF 工作,从而可以检测高达 3 m/s 的射流速度。

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