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In vitro high-frame-rate contrast-enhanced ultrasound particle image velocimetry in a carotid artery stent

机译:颈动脉支架中的体外高帧率对比增强超声颗粒图像测速

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Introduction: To improve carotid artery stenting (CAS), more information about the functioning of the stent is needed. Therefore, a method that can image the flow near and around a stent is required. The aim of this study was to evaluate the performance of high-frame-rate contrast-enhanced ultrasound (HFR CEUS) in the presence of a stent. Methodology: HFR CEUS acquisitions of a carotid artery phantom, a silicone tube with diameter 8 mm, with and without a stent were acquired at transmit voltages of 2V, 4V and 10V using a Verasonics ultrasound system and C5-2 probe. Different concentrations of ultrasound contrast agent (UCA) were tested in a blood mimicking fluid (BMF). Particle image velocimetry (PIV) analysis was performed on Singular Value Decomposition (SVD) filtered images. Mean and peak velocities, and correlation coefficients were compared between stented and non-stented regions. Also, experimental results were compared with theoretical and numerical models. Results: The averaged experimental mean velocity (0.113 m/s) was significant lower than the theoretical and numerical mean velocity (0.129 m/s). The averaged experimental peak velocity (0.152 m/s) was significant lower than the theoretical and numerical peak velocity (0.259 m/s). Correlation coefficients and averaged mean velocity values were lower (difference of 0.022 m/s) in stented regions compared to non-stented regions. Conclusion: In vitro experiments showed an underestimation of mean and peak velocities in stented regions compared to non-stented regions. However, the microbubbles can be tracked efficiently and the expected laminar flow profile can be quantified using HFR CEUS near and around a stent.
机译:简介:为了改善颈动脉支架置入术(CAS),需要更多有关支架功能的信息。因此,需要一种能够对支架附近和周围的流动进行成像的方法。这项研究的目的是评估在有支架的情况下高帧率对比增强超声(HFR CEUS)的性能。方法:使用Verasonics超声系统和C5-2探头,以2V,4V和10V的发射电压采集HFR CEUS采集的颈动脉体模,直径8 mm的硅胶管(带和不带支架)。在血液模拟液(BMF)中测试了不同浓度的超声造影剂(UCA)。对奇异值分解(SVD)滤波图像执行了粒子图像测速(PIV)分析。比较了支架和非支架区域的平均速度和峰值速度,以及相关系数。此外,将实验结果与理论模型和数值模型进行了比较。结果:平均实验平均速度(0.113 m / s)显着低于理论和数值平均速度(0.129 m / s)。平均实验峰值速度(0.152 m / s)明显低于理论和数值峰值速度(0.259 m / s)。与非支架区域相比,支架区域的相关系数和平均平均速度值较低(差异为0.022 m / s)。结论:体外实验表明,与非支架区域相比,支架区域的平均速度和峰值速度被低估了。但是,可以使用支架附近和周围的HFR CEUS有效地跟踪微气泡,并可以量化预期的层流轮廓。

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