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具有任意数量独立通道的超声高级开放平台架构。

Architecture for an Ultrasound Advanced Open Platform With an Arbitrary Number of Independent Channels.

出版信息

IEEE Trans Biomed Circuits Syst. 2021 Jun;15(3):486-496. doi: 10.1109/TBCAS.2021.3077664. Epub 2021 Aug 12.

Abstract

Ultrasound open platforms are programmable and flexible tools for the development and test of novel methods. In most cases, they embed the electronics for the independent control of (maximum) 256 probe elements. However, a higher number of channels is needed for the control of 2-D array probes. This paper presents a system architecture that, through the hardware and software synchronization of multiple ULA-OP 256 scanners, may implement advanced open platforms with an arbitrary number of channels. The proposed solution needs a single personal computer, maintains real-time features, and preserves portability. A prototype demonstrator, composed of two ULA-OP 256 scanners connected to 512 elements of a matrix array, was implemented and tested according to different channel configurations. Experiments performed under MATLAB control confirmed that by doubling the number of elements (from 256 to 512) the signal-to-noise and contrast ratios improve by 9 dB and 3 dB, respectively. Furthermore, as a full 512-channel scanner, the demonstrator can produce real-time B-mode images at 18 Hz, high enough for probe positioning during acquisitions. Also, the demonstrator permitted the implementation of a new high frame rate, bi-plane, triplex modality. All probe elements are excited to simultaneously produce two planar, perpendicular diverging waves. Each scanner independently processes the echoes received by the 256 connected elements to beamform 1300 frames per second. For each insonified plane, good quality morphological (B-mode), qualitative (color flow-), and quantitative (spectral-) Doppler images are finally shown in real-time by a dedicated interface.

摘要

超声开放式平台是用于开发和测试新型方法的可编程和灵活工具。在大多数情况下,它们嵌入了用于独立控制(最大)256 个探头元件的电子设备。然而,对于控制 2-D 阵列探头,需要更多的通道数。本文提出了一种系统架构,通过多个 ULA-OP 256 扫描仪的硬件和软件同步,可以实现具有任意数量通道的先进开放式平台。所提出的解决方案仅需要一台个人计算机,保持实时性,并保持便携性。根据不同的通道配置,实现并测试了由两个 ULA-OP 256 扫描仪和一个矩阵阵列的 512 个元件组成的原型演示器。在 MATLAB 控制下进行的实验证实,通过将元件数量增加一倍(从 256 增加到 512),信号噪声比和对比度分别提高了 9dB 和 3dB。此外,作为一个完整的 512 通道扫描仪,该演示器可以以 18Hz 的速度实时产生 B 模式图像,足以满足采集过程中的探头定位要求。此外,该演示器还允许实现一种新的高帧率、双平面、三联模态。所有探头元件同时激发以产生两个平面、垂直发散波。每个扫描仪独立处理由 256 个连接元件接收的回波,以每秒 1300 帧的速度进行波束形成。对于每个被照射的平面,最终通过专用接口实时显示高质量的形态学(B 模式)、定性(彩色血流)和定量(频谱)多普勒图像。

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