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Effects of Drive Field Parameters in Magnetic Particle Imaging: A Relaxometer Study

机译:驱动场参数在磁粉成像中的作用:张弛仪研究

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In Magnetic Particle Imaging (MPI), it is possible to acquire signal from the nanoparticles via applying oscillating magnetic fields in the 1 kHz -150 kHz frequency range . Though 25 kHz is commonly used, there are not enough studies on determining the optimal excitation frequency and excitation strength for obtaining images of high quality. In this study, we observed nanoparticles’ response and the effect on the point spread functions (PSF) at various field amplitudes and at 10 kHz, 25 kHz and 148.5 kHz excitation frequencies. Accordingly, at 10 kHz and 25 kHz both the harmonic response of the nanoparticles and the PSFs are largely similar. On the other hand, the frequency components at 148.5 kHz are decreasing rapidly at increasing harmonics. The larger full-width at half-maximum of the obtained PSF indicates that the image resolution of this image will be lower at this frequency.
机译:在磁性粒子成像(MPI)中,可以通过在1 kHz -150 kHz频率范围内施加振荡磁场来从纳米粒子获取信号。尽管通常使用25 kHz,但是对于确定最佳激励频率和激励强度以获得高质量图像的研究还不够多。在这项研究中,我们观察了纳米粒子在各种场振幅以及10 kHz,25 kHz和148.5 kHz激发频率下的响应以及对点扩散函数(PSF)的影响。因此,在10kHz和25kHz下,纳米颗粒和PSF的谐波响应都非常相似。另一方面,随着谐波的增加,148.5 kHz的频率分量迅速减小。所获得的PSF的最大半角全角越大,表明该图像的图像分辨率在该频率下会越低。

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