磁颗粒成像中提高分辨率的超分辨率方法

A. Timmermeyer, H. Wojtczyk, W. Tenner, G. Bringout, M. Gruttner, M. Graeser, T. Sattel, A. Halkola, T. Buzug
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引用次数: 1

摘要

在空间分辨率的定义中,如果距离的最小值小于目标位置值的50%,则认为两个目标是可区分的[7],两种方法在一维模拟研究中都实现了空间分辨率的提高,如图1和图2所示。如果将空间分辨率考虑为两条区分线的最小宽度,则使用空间移位图像的第一种方法获得了1.7 mm的空间分辨率,而使用不同采样点的第二种方法获得了2.6 mm的分辨率。与使用的空间分辨率为2毫米(第一种方法)和2.9毫米(第二种方法)的低分辨率图像相比,这是一个改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Super-resolution approaches for resolution enhancement in magnetic particle imaging
Given a definition of spatial resolution that considers two objects as distinguished if the minimum value of the gap is less than 50% of the value at the object position [7], both approaches achieved an improvement of the spatial resolution in the 1D simulation study as visualized in Fig. 1 and 2. If the spatial resolution is considered as the minimum width of two distinguished lines, the first approach using spatially shifted images achieved a spatial resolution of 1.7 mm and the second approach using different sampling points achieved a resolution of 2.6 mm. This is an improvement in comparison to the used low resolution images with a spatial resolution of 2 mm (first approach) and 2.9 mm (second approach).
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