Berman Shai, Schurr Roey, Atlan Gal, Citri Ami, Mezer Aviv A
Edmond and Lily Safra Center for Brain Sciences, Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Cereb Cortex Commun. 2020 Sep 1;1(1):tgaa062. doi: 10.1093/texcom/tgaa062. eCollection 2020.
The claustrum is a thin sheet of neurons enclosed by white matter and situated between the insula and the putamen. It is highly interconnected with sensory, frontal, and subcortical regions. The deep location of the claustrum, with its fine structure, has limited the degree to which it could be studied in vivo. Particularly in humans, identifying the claustrum using magnetic resonance imaging (MRI) is extremely challenging, even manually. Therefore, automatic segmentation of the claustrum is an invaluable step toward enabling extensive and reproducible research of the anatomy and function of the human claustrum. In this study, we developed an automatic algorithm for segmenting the human dorsal claustrum in vivo using high-resolution MRI. Using this algorithm, we segmented the dorsal claustrum bilaterally in 1068 subjects of the Human Connectome Project Young Adult dataset, a publicly available high-resolution MRI dataset. We found good agreement between the automatic and manual segmentations performed by 2 observers in 10 subjects. We demonstrate the use of the segmentation in analyzing the covariation of the dorsal claustrum with other brain regions, in terms of macro- and microstructure. We identified several covariance networks associated with the dorsal claustrum. We provide an online repository of 1068 bilateral dorsal claustrum segmentations.
屏状核是一层由白质包裹的薄神经元层,位于脑岛和壳核之间。它与感觉、额叶及皮质下区域高度互联。屏状核位置较深,结构精细,这限制了其在活体中的研究程度。特别是在人类中,即使通过手动操作,利用磁共振成像(MRI)识别屏状核也极具挑战性。因此,屏状核的自动分割对于开展关于人类屏状核解剖结构和功能的广泛且可重复的研究而言,是至关重要的一步。在本研究中,我们开发了一种利用高分辨率MRI在活体中分割人类背侧屏状核的自动算法。使用该算法,我们在公开可用的高分辨率MRI数据集——人类连接体计划青年成人数据集中的1068名受试者身上双侧分割了背侧屏状核。我们发现2名观察者对10名受试者进行的自动分割和手动分割之间具有良好的一致性。我们展示了该分割在从宏观和微观结构方面分析背侧屏状核与其他脑区协变关系中的应用。我们识别出了几个与背侧屏状核相关的协变网络。我们提供了一个包含1068个双侧背侧屏状核分割结果的在线资源库。