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Effects of scanning rate on relaxation-induced blurring in magnetic particle image

机译:扫描速率对磁粉图像中弛豫引起的模糊的影响

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We measured the relaxation times of PSFs acquired at a range of scanning rate, which was varied by changing the excitation field strength. As excitation scanning rate increased, measured relaxation times decreased (Figure 1b). This effect is likely due to the stronger magnetic torque acting on the particles. Relaxation field delays were calculated for the same data to observe how relaxation time delays translated to delays in field after taking into account the scanning rate. As the excitation field was scanned faster, relaxation field delays increased (Figure 1c). FWHM measurements followed a similar trend as the relaxation field delays and increased as scanning rate increased (Figure 1d). Although faster scanning decreases relaxation times, increasing scanning rate exacerbates image blur due to relaxation.
机译:我们测量了在一定范围的扫描速率下获得的PSF的弛豫时间,该速率通过改变激发场强度来改变。随着激发扫描速率的增加,测得的弛豫时间减少(图1b)。这种作用可能是由于作用在颗粒上的较强的磁转矩引起的。计算相同数据的弛豫场延迟,以观察弛豫时间延迟在考虑扫描速率后如何转换为场延迟。随着激发场的扫描速度加快,弛豫场延迟增加(图1c)。 FWHM测量遵循类似的趋势,即弛豫场延迟,并且随着扫描速率的增加而增加(图1d)。尽管更快的扫描减少了弛豫时间,但是增加的扫描速率会由于弛豫而加剧图像模糊。

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