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Cross-correlation detection improves spatial delineation and enables high resolution tracking of temporal events in magnetomotive ultrasound imaging

机译:互相关检测改善了空间描绘,并实现了磁动超声成像中时间事件的高分辨率跟踪

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Magnetomotive ultrasound (MM US) imaging is a method whereby superparamagnetic iron oxide nanoparticles (SPIO NP) are used as a contrast agent. By applying an external magnetic field the particles are set in motion together with their surroundings. The induced movement is detected with ultrasound, and for the case of harmonic excitation of the magnetic source, quadrature detection (lock-in plus phase gating) can recover the magnetomotive signal (doi:10.1109/TUFFC.2013.2591). Here, we propose instead the use of cross-correlation for detection, and report the potential benefits compared to the previous approach.
机译:磁动力超声(MM US)成像是一种方法,其中超顺磁性氧化铁纳米颗粒(SPIO NP)被用作造影剂。通过施加外部磁场,粒子与周围环境一起运动。用超声波检测感应的运动,对于磁源的谐波激励,正交检测(锁定加相位门控)可以恢复磁动信号(doi:10.1109 / TUFFC.2013.2591)。在这里,我们建议使用互相关来进行检测,并报告与先前方法相比的潜在好处。

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