Combined use of iteration, quadratic interpolation and an extra kernel for high-resolution 2D particle tracking: A first evaluation

J. Albinsson, S. Brorsson, F. Lindgren, Å. R. Ahlgren, M. Cinthio
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引用次数: 2

Abstract

A novel 2D particle tracking method, that uses 1) iteration, 2) fast quadratic sub-pixel estimation (with only 28 multiplications per movement), and 3) a previous kernel, has been evaluated and compared with a full-search block-matching method. The comparison with high-frequency ultrasound data (40 MHz) was conducted in silico and on phantoms, which comprised lateral, diagonal, and ellipsoidal movement patterns with speeds of 0–15 mm/s. The mean tracking error was reduced by 68% in silico and 71% for the phantom measurements. When only sub-pixel estimation was used, the decrease in the tracking error was 61% in silico and 57% for the phantom measurements. As well as decreasing the tracking error, the new method only used 70% of the computational time needed by the full-search block-matching method. With a fast method having good tracking ability for high-frequency ultrasound data, we now have a tool to better investigate tissue movements and its dynamic functionality.
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结合使用迭代,二次插值和一个额外的核高分辨率二维粒子跟踪:第一次评估
对一种新的二维粒子跟踪方法进行了评估,并与全搜索块匹配方法进行了比较,该方法使用1)迭代,2)快速二次亚像素估计(每次移动仅需28次乘法)和3)先前的核。与高频超声数据(40 MHz)进行了比较,在硅和幻影,包括横向,对角线和椭球运动模式,速度为0-15 mm/s。平均跟踪误差减少了68%的硅和71%的幻影测量。当只使用亚像素估计时,跟踪误差在计算机中减少61%,在幻影测量中减少57%。在减小跟踪误差的同时,该方法的计算时间仅为全搜索块匹配方法的70%。通过对高频超声数据的快速跟踪,我们现在有了一个更好地研究组织运动及其动态功能的工具。
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