Center for Information and Neural Networks, National Institute of Information and Communications Technology, Osaka, Japan.
Graduate School of Frontier Biosciences, Osaka University, Osaka, Japan.
PLoS One. 2019 Feb 28;14(2):e0210803. doi: 10.1371/journal.pone.0210803. eCollection 2019.
We proposed a method for segmentation of brain tissues-gray matter, white matter, and cerebrospinal fluid-using multi-contrast images, including a T1 map and a uniform T1-weighted image, from a magnetization-prepared 2 rapid acquisition gradient echoes (MP2RAGE) sequence at 7 Tesla. The proposed method was evaluated with respect to the processing time and the similarity of the segmented masks of brain tissues with those obtained using FSL, FreeSurfer, and SPM12. The processing time of the proposed method (28 ± 0 s) was significantly shorter than those of FSL and SPM12 (444 ± 4 s and 159 ± 2 s for FSL and SPM12, respectively). In the similarity assessment, the tissue mask of the brain obtained by the proposed method showed higher consistency with those obtained using FSL than with those obtained using SPM12. The proposed method misclassified the subcortical structures and large vessels since it is based on the intensities of multi-contrast images obtained using MP2RAGE, which uses a similar segmentation approach as FSL but is not based on a template image or a parcellated brain atlas, which are used for FreeSurfer and SPM12, respectively. However, the proposed method showed good segmentation in the cerebellum and white matter in the medial part of the brain in comparison with the other methods. Thus, because the proposed method using different contrast images of MP2RAGE sequence showed the shortest processing time and similar segmentation ability as the other methods, it may be useful for both neuroimaging research and clinical diagnosis.
我们提出了一种使用多对比度图像(包括 T1 图谱和均匀 T1 加权图像)对 7T 磁化准备 2 快速获取梯度回波(MP2RAGE)序列中的脑灰质、白质和脑脊液进行分割的方法。该方法在处理时间和脑组织分割掩模的相似性方面与 FSL、FreeSurfer 和 SPM12 进行了评估。与 FSL 和 SPM12 相比,该方法的处理时间(28±0s)显著更短(FSL 和 SPM12 分别为 444±4s 和 159±2s)。在相似性评估中,与 SPM12 相比,该方法获得的脑组织的组织掩模与 FSL 获得的组织掩模具有更高的一致性。由于该方法基于 MP2RAGE 获得的多对比度图像的强度,因此它错误地分类了皮质下结构和大血管,而 FSL 则使用了类似的分割方法,但不基于模板图像或分割脑图谱,分别用于 FreeSurfer 和 SPM12。然而,与其他方法相比,该方法在小脑和大脑内侧白质中的分割效果较好。因此,由于该方法使用不同的 MP2RAGE 序列对比度图像显示出最短的处理时间和与其他方法相似的分割能力,因此它可能对神经影像学研究和临床诊断都很有用。