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Diffusion tensor‐based regional gray matter tissue segmentation using the international consortium for brain mapping atlases

机译:使用国际财团的脑扩散图谱基于扩散张量的区域灰质组织分割

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摘要

In this communication, we extended a previously described and validated diffusion tensor imaging (DTI) method for segmenting whole brain cerebrospinal fluid (CSF) and gray and white matter (WM) tissue to provide regional volume and DTI metrics of WM tract and cortical and subcortical gray matter. This DTI‐based regional segmentation was implemented using the statistical parametric mapping (SPM) toolbox and used the international consortium for brain mapping atlases and Montreal Neurological Institute brain templates. We used our DTI‐based segmentation approach to calculate the left putamen volume in a cohort of 136 healthy right‐handed males and females aged 15.8–62.8 years. We validated our approach by demonstrating its sensitivity to age‐related changes of the putamen. Indeed, our method found that the putamen volume decreased with age ( = −0.30; < 0.001) while the corresponding fractional anisotropy (FA) increased with advancing age ( = 0.5; < 0.00001). It is then demonstrated, on a subset of our cohort ( = 31), that the putamen volume obtained by our method correlated with measurements obtained from FreeSurfer ( = 0.396, < 0.05). Our novel approach increases the information obtained with a DTI examination by providing routine volumetry measure, thereby eliminating separate scans to obtain volumetry data. In addition, the labeled volumes obtained with our method have the potential to increase the accuracy of fiber tracking. In the future, this new approach can be automated to analyze large data sets to help discover noninvasive neuroimaging markers for clinical trials and brain‐function studies in both health and disease. Hum Brain Mapp, 2010. © 2010 Wiley‐Liss, Inc.
机译:在本交流中,我们扩展了先前描述和验证的弥散张量成像(DTI)方法,用于分割全脑脑脊液(CSF)和灰白质(WM)组织,以提供WM道以及皮层和皮层下区域的区域体积和DTI指标灰质。这种基于DTI的区域分割是使用统计参数映射(SPM)工具箱实现的,并使用了国际联盟的大脑映射图集和蒙特利尔神经科学研究所的大脑模板。我们使用基于DTI的分割方法来计算136名年龄在15.8至62.8岁之间的健康右撇子男性和女性的队列中的左壳核素量。我们通过证明其对年龄相关的壳核变化的敏感性来验证我们的方法。确实,我们的方法发现,随着年龄的增长,壳聚糖的量会随着年龄的增长而减少(= -0.30; <0.001),而随着年龄的增长,相应的分数各向异性(FA)会增加(= 0.5; <0.00001)。然后,在我们的队列的一个子集(= 31)中,证明了通过我们的方法获得的果壳体积与从FreeSurfer获得的测量值相关(= 0.396,<0.05)。我们的新颖方法通过提供常规的容积测量来增加通过DTI检查获得的信息,从而消除了获取容积数据的单独扫描。此外,用我们的方法获得的标记体积有可能提高纤维跟踪的准确性。将来,这种新方法可以自动分析大量数据,以帮助发现用于健康和疾病临床试验和脑功能研究的非侵入性神经影像标记。嗡嗡的脑图,2010年。©2010 Wiley-Liss,Inc.

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