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Native blood speckle vs ultrasound contrast agent for particle image velocimetry with ultrafast ultrasound - in vitro experiments

机译:用超快速超声波粒子图像测速粒子斑点对粒子图像测速剂的原生血液斑点 - 体外实验

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Ultrafast contrast enhanced ultrasound, combined with echo particle image velocimetry (ePIV), can provide accurate, multidimensional hemodynamic flow field measurement. However, the use of ultrasound contrast agent (UCA) still prevents this method from becoming a truly versatile and non-invasive diagnostic tool. In this study, we investigate the use of native blood instead of UCA backscatter for ePIV measurements and compare their accuracy in vitro. Additionally, the effect of measurement depth is experimentally assessed. Blood mimicking fluid (BMF) was pumped through a 10 mm diameter tube producing parabolic flow profiles, adding UCA in the case of contrast imaging. Plane wave imaging at 5000 frames-per-second was performed with a Verasonics Vantage system and a linear array. The tube was imaged at three different depths: 25, 50 and 100 mm. Singular value decomposition (SVD) was assessed for clutter suppression against mean background subtraction. PIVlab was used as a PIV implementation. With SVD, BMF provided almost equal ePIV accuracy as UCA, except at 100 mm depth where UCA provided better accuracy. Use of clutter suppression greatly improved ePIV results, but minimal differences in ePIV accuracy were noted between mean and SVD filtered groups (BMF or UCA). Accuracy decreased with increasing depth, likely due to reduced elevation resolution, resulting in out-of-plane smoothing of velocity gradients.
机译:超快对比增强超声波,结合回声粒子图像速度(EPIV),可以提供准确,多维血液动力流场测量。然而,使用超声造影剂(UCA)仍然防止该方法成为一个真正多功能和非侵入性诊断工具。在这项研究中,我们调查使用原生血,而不是UCA反向散射进行EPIV测量,并在体外比较它们的准确性。另外,通过实验评估测量深度的效果。血液模拟液(BMF)通过10mm直径的管道产生抛物线流程曲线,在对比度成像的情况下添加UCA。使用Arasonics Vantage System和线性阵列进行平面波成像5000帧。将管在三种不同的深度成像:25,50和100mm。评估奇异值分解(SVD),用于对平均背景减法进行杂波抑制。 PIVLAB被用作PIV实现。使用SVD,BMF提供几乎与UCA相同的EPIV精度,除了UCA提供更好的准确性100 mm深度。使用杂波抑制大大改善了EPIV结果,但在平均值和SVD过滤组(BMF或UCA)之间注意到EPIV精度的最小差异。随着深度的增加,精度降低,可能是由于降低的高度分辨率,导致速度梯度的平面外平滑。

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