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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Single Magnetic Particle Motion in Magnetomotive Ultrasound: An Analytical Model and Experimental Validation
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Single Magnetic Particle Motion in Magnetomotive Ultrasound: An Analytical Model and Experimental Validation

机译:磁影超声中的单磁粒子运动:分析模型与实验验证

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摘要

Magnetomotive Ultrasound (MMUS) is an emerging imaging modality, in which magnetic nanoparticles (MNPs) are used as contrast agents. MNPs are driven by a time-varying magnetic force, and the resulting movement of the surrounding tissue is detected with a signal processing algorithm. However, there is currently no analytical model to quantitatively predict this magnetically-induced displacement. Toward the goal of predicting motion due to forces on the distribution of MNPs, in this work, a model originally derived from the Navier-Stokes equation for the motion of a single magnetic particle subject to a magnetic gradient force is presented and validated. Displacement amplitudes for a spatially inhomogeneous and temporally sinusoidal force were measured as a function of force amplitude and Young's modulus, and the predicted linear and inverse relationships were confirmed in gelatin phantoms, respectively, with three out of four data sets exhibiting R-2 >= 0.88. The mean absolute uncertainty between the predicted displacement magnitude and experimental results was 14%. These findings provide a means by which the performance of MMUS systems may be predicted to verify that systems are working to theoretical limits and to compare results across laboratories.
机译:磁素超声(MMU)是一种新兴成像模态,其中磁性纳米颗粒(MNP)用作造影剂。 MNP通过时变磁力驱动,用信号处理算法检测周围组织的所得到的运动。然而,目前没有分析模型来定量预测该磁诱导的位移。朝着在MNP的分布上预测运动的目标,在这项工作中,提出并验证了由对磁梯度力进行的单个磁性粒子的运动的沟通方程最初导出的模型。测量用于空间不均匀且时间正弦力的位移幅度作为力幅度和杨氏模量的函数,分别在明胶幽灵中确认了预测的线性和反向关系,其中四个数据集中的三种数据集中呈现R-2> = 0.88。预测位移幅度和实验结果之间的平均绝对不确定性为14%。这些发现提供了一种方法,通过该方法可以预测MMUS系统的性能,以验证系统是否正常工作,并在实验室中比较结果。

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