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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Detection of Contrast Agents: Plane Wave Versus Focused Transmission
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Detection of Contrast Agents: Plane Wave Versus Focused Transmission

机译:造影剂的检测:平面波与聚焦传输

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摘要

Ultrasound contrast agent (UCA) imaging provides a cost-effective diagnostic tool to assess tissue perfusion and vascular pathologies. However, excessive transmission (TX) levels may negatively impact both uniform diffusion and survival rates of contrast agents, limiting their density and thus their echogenicity. Contrast detection methods with both high sensitivity and low-contrast destruction rate are thus essential to maintain diagnostic capabilities. Plane-wave TX with a high number of compounding angles has been suggested to produce good quality images at pressure levels that do not destroy UCA. In this paper, we performed a quantitative evaluation of detection efficacy of flowing UCA with either traditional focused scanning or ultrafast plane-wave imaging. Amplitude modulation (AM) at nondestructive pressure levels was implemented in the ULA-OP ultrasound research platform. The influence of the number of compounding angles, peak-negative pressure, and flow speed on the final image quality was investigated. Results show that the images obtained by compounding multiple angled plane waves offer a greater contrast (up to a 12-dB increase) with respect to focused AM. This increase is attributed mainly to noise reduction caused by the coherent summation in the compounding step. Additionally, we show that highly sensitive detection is already achieved with a limited compounding number (), thus suggesting the feasibility of continuous contrast monitoring at a high frame rate. This capability is essential to properly detect contrast agents flowing at high speed, as an excessive angle compounding is shown to be destructive for the contrast signal, as the UCA motion quickly causes loss of correlation between consecutive echoes.
机译:超声造影剂(UCA)成像提供了一种经济高效的诊断工具,可以评估组织灌注和血管病变。但是,过高的透射(TX)水平可能会对造影剂的均匀扩散和存活率产生不利影响,从而限制了其密度,从而限制了其回声性。因此,具有高灵敏度和低对比度破坏率的对比度检测方法对于保持诊断能力至关重要。已经提出具有高复角度的平面波TX可以在不破坏UCA的压力水平下产生高质量的图像。在本文中,我们使用传统的聚焦扫描或超快平面波成像技术对流动的UCA的检测功效进行了定量评估。在ULA-OP超声研究平台中实施了无损压力水平的幅度调制(AM)。研究了复合角数,峰负压和流速对最终图像质量的影响。结果表明,通过复合多个成角度的平面波获得的图像相对于聚焦AM提供了更大的对比度(最多增加了12 dB)。该增加主要归因于在混合步骤中由相干求和引起的噪声降低。此外,我们显示了有限的合成数()即可实现高度灵敏的检测,从而表明了在高帧频下进行连续对比度监控的可行性。此功能对于正确检测高速流动的造影剂至关重要,因为由于UCA运动很快会导致连续回波之间失去相关性,因此过多的角度混合对造影剂信号具有破坏性。

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