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Comparison of 3-D multi-lag cross- correlation and speckle brightness aberration correction algorithms on static and moving targets

机译:静态和运动目标上的3-D多延迟互相关和斑点亮度像差校正算法的比较

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摘要

Phase correction has the potential to increase the image quality of 3-D ultrasound, especially transcranial ultrasound. We implemented and compared 2 algorithms for aberration correction, multi-lag cross-correlation and speckle brightness, using static and moving targets. We corrected three 75-ns rms electronic aberrators with full-width at half-maximum (FWHM) auto-correlation lengths of 1.35, 2.7, and 5.4 mm. Cross-correlation proved the better algorithm at 2.7 and 5.4 mm correlation lengths (P < 0.05). Static cross-correlation performed better than moving-target cross-correlation at the 2.7 mm correlation length (P < 0.05). Finally, we compared the static and moving-target cross-correlation on a flow phantom with a skull casting aberrator. Using signal from static targets, the correction resulted in an average contrast increase of 22.2%, compared with 13.2% using signal from moving targets. The contrast-to-noise ratio (CNR) increased by 20.5% and 12.8% using static and moving targets, respectively. Doppler signal strength increased by 5.6% and 4.9% for the static and moving-targets methods, respectively.
机译:相位校正有可能提高3-D超声(尤其是经颅超声)的图像质量。我们使用静态和移动目标,实施并比较了两种算法,用于像差校正,多延迟互相关和斑点亮度。我们校正了三只75 ns rms有效值电子像差器,它们的全幅半最大(FWHM)自相关长度分别为1.35、2.7和5.4 mm。互相关证明了在2.7和5.4 mm相关长度时更好的算法(P <0.05)。在2.7 mm相关长度处,静态互相关的性能优于移动目标互相关(P <0.05)。最后,我们将流幻影上的静态和移动目标互相关与头骨投射畸变器进行了比较。使用来自静态目标的信号,校正导致平均对比度增加22.2%,而使用来自移动目标的信号则为13.2%。使用静态和移动目标时,对比度噪声比(CNR)分别增加了20.5%和12.8%。静态和移动目标方法的多普勒信号强度分别提高了5.6%和4.9%。

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