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Experimental Evaluation of Correlation-Based Image Reconstruction Method for Magnetic Particle Imaging

机译:基于相关性的磁颗粒成像的图像重建方法的实验评价

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In a conventional magnetic particle imaging (MPI) method, a reconstructed image is mainly calculated from odd harmonics of the magnetization response. However, the image blurring and artifacts appear due to the interference of the magnetization response generated from magnetic nanoparticles (MNPs) around the field free point (FFP), so that the image resolution is degraded. Therefore, we proposed a new image reconstruction method that was focused on the difference between a waveform of electromotive force generated from inside and outside of an object region. Then, a numerical analysis and a phantom experiment were performed in order to confirm validity of the proposal method, and an experiment system was constructed. As results, it was indicated that image artifacts was reduced by the proposal method. However, since the image blurring was seen on the reconstructed image, the image resolution needs to be improved.
机译:在传统的磁颗粒成像(MPI)方法中,重建图像主要根据磁化响应的奇谐波计算。然而,图像模糊和伪像由于从磁性纳米颗粒(MNP)周围的磁纳米颗粒(FFP)周围产生的磁化响应的干涉而出现,使得图像分辨率劣化。因此,我们提出了一种新的图像重建方法,其专注于从物体区域的内部和外部产生的电动势波形之间的差异。然后,进行数值分析和幻像实验,以确认提案方法的有效性,构建实验系统。结果结果表明,通过提案方法减少了图像伪影。然而,由于在重建图像上看到图像模糊,因此需要改善图像分辨率。

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