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高帧率对比增强超声成像用于慢淋巴流动:超声压力和流速对气泡破坏和图像持续时间的影响。

High Frame Rate Contrast-Enhanced Ultrasound Imaging for Slow Lymphatic Flow: Influence of Ultrasound Pressure and Flow Rate on Bubble Disruption and Image Persistence.

机构信息

Department of Bioengineering, Imperial College London, UK.

Department of Bioengineering, Imperial College London, UK.

出版信息

Ultrasound Med Biol. 2019 Sep;45(9):2456-2470. doi: 10.1016/j.ultrasmedbio.2019.05.016. Epub 2019 Jul 3.

Abstract

Contrast-enhanced ultrasound (CEUS) utilising microbubbles shows great potential for visualising lymphatic vessels and identifying sentinel lymph nodes (SLNs) which are valuable for axillary staging in breast cancer patients. However, current CEUS imaging techniques have limitations that affect the accurate visualisation and tracking of lymphatic vessels and SLN. (i) Tissue artefacts and bubble disruption can reduce the image contrast. (ii) Limited spatial and temporal resolution diminishes the amount of information that can be captured by CEUS. (iii) The slow lymph flow makes Doppler-based approaches less effective. This work evaluates on a lymphatic vessel phantom the use of high frame rate (HFR) CEUS for the detection of lymphatic vessels where flow is slow. Specifically, the work particularly investigates the impact of key factors in lymphatic imaging, including ultrasound pressure and flow velocity as well as probe motion during vessel tracking, on bubble disruption and image contrast. Experiments were also conducted to apply HFR CEUS imaging on vasculature in a rabbit popliteal lymph node (LN). Our results show that (i) HFR imaging and singular value decomposition (SVD) filtering can significantly reduce tissue artefacts in the phantom at high clinical frequencies; (ii) the slow flow rate within the phantom makes image contrast and signal persistence more susceptible to changes in ultrasound amplitude or mechanical index (MI), and an MI value can be chosen to reach a compromise between images contrast and bubble disruption under slow flow condition; (iii) probe motion significantly decreases image contrast of the vessel, which can be improved by applying motion correction before SVD filtering; (iv) the optical observation of the impact of ultrasound pressure on HFR CEUS further confirms the importance of optimising ultrasound amplitude and (v) vessels inside rabbit LN with blood flow less than 3 mm/s are clearly visualised.

摘要

超声造影(CEUS)利用微泡在可视化淋巴管和识别前哨淋巴结(SLN)方面具有很大的潜力,这对于乳腺癌患者的腋窝分期非常有价值。然而,目前的 CEUS 成像技术存在一些限制,影响了淋巴管和 SLN 的准确可视化和跟踪。(i)组织伪影和微泡破裂会降低图像对比度。(ii)有限的空间和时间分辨率降低了 CEUS 可以捕获的信息量。(iii)缓慢的淋巴流动使得基于多普勒的方法效果不佳。本工作在淋巴管模型中评估了高帧率(HFR)CEUS 在检测流速较慢的淋巴管中的应用。具体来说,这项工作特别研究了在淋巴管成像中,包括超声压力和流速以及在血管跟踪过程中的探头运动等关键因素对微泡破裂和图像对比度的影响。还进行了实验将 HFR CEUS 成像应用于兔腘淋巴结(LN)的脉管系统。我们的结果表明:(i)HFR 成像和奇异值分解(SVD)滤波可以显著减少在高临床频率下模型中的组织伪影;(ii)模型中缓慢的流速使得图像对比度和信号持久性更容易受到超声幅度或机械指数(MI)变化的影响,并且可以选择 MI 值来在缓慢流动条件下在图像对比度和微泡破裂之间达到折衷;(iii)探头运动显著降低了血管的图像对比度,可以通过在 SVD 滤波之前应用运动校正来改善;(iv)光学观察到超声压力对 HFR CEUS 的影响进一步证实了优化超声幅度的重要性;(v)血流速度小于 3mm/s 的兔 LN 内的血管可以清晰显示。

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