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The Use of Super-Resolution Techniques to Reduce Slice Thickness in Functional MRI

机译:使用超分辨率技术减少功能性MRI中的切片厚度

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The problem of increasing the slice resolution of functional MRI (fMRI) images without a loss in signal-to-noise ratio is considered. In standard fMRI experiments, increasing the slice resolution by a certain factor decreases the signal-to-noise ratio of the images with the same factor. For this purpose an adapted EPI MRI acquisition protocol is proposed, allowing one to acquire slice-shifted images from which one can generate interpolated super-resolution images, with an increased resolution in the slice direction. To solve the problem of correctness and robustness of the created super-resolution images from these slice-shifted datasets, the use of discontinuity preserving regularization methods is proposed. Tests on real morphological, synthetic functional, and real functional MR data-sets have been performed, by comparing the obtained super-resolution datasets with high-resolution reference datasets. In the morphological experiments the image spatial resolution of the different types of images are compared. In the synthetic and real fMRI experiments, on the other hand, the quality of the different datasets is studied as function of their resulting activation maps. From the results obtained in this study, we conclude that the proposed super-resolution techniques can both improve the signal-to-noise ratio and augment the detectability of small activated areas in fMRI image sets acquired with thicker slices.
机译:考虑了在不损失信噪比的情况下增加功能性MRI(fMRI)图像的切片分辨率的问题。在标准fMRI实验中,将切片分辨率提高某个因子会降低具有相同因子的图像的信噪比。为此,提出了一种适应性的EPI MRI采集协议,该协议允许采集切片移位的图像,从中可以生成内插的超分辨率图像,并且在切片方向上具有更高的分辨率。为了解决这些切片移位数据集创建的超分辨率图像的正确性和鲁棒性问题,提出了使用不连续性保留正则化方法。通过将获得的超分辨率数据集与高分辨率参考数据集进行比较,对真实形态,合成功能和真实功能MR数据集进行了测试。在形态实验中,比较了不同类型图像的图像空间分辨率。另一方面,在合成和实际fMRI实验中,研究了不同数据集的质量作为其生成的激活图的函数。从这项研究中获得的结果,我们得出结论,提议的超分辨率技术既可以提高信噪比,又可以增强用较厚切片获取的fMRI图像集中小激活区域的可检测性。

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