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基于表面的语言侧化和皮质不对称性分析。

A surface-based analysis of language lateralization and cortical asymmetry.

机构信息

The Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Room 2301, 149 13th Street, Charlestown, MA 02129, USA.

出版信息

J Cogn Neurosci. 2013 Sep;25(9):1477-92. doi: 10.1162/jocn_a_00405. Epub 2013 Apr 22.

Abstract

Among brain functions, language is one of the most lateralized. Cortical language areas are also some of the most asymmetrical in the brain. An open question is whether the asymmetry in function is linked to the asymmetry in anatomy. To address this question, we measured anatomical asymmetry in 34 participants shown with fMRI to have language dominance of the left hemisphere (LLD) and 21 participants shown to have atypical right hemisphere dominance (RLD). All participants were healthy and left-handed, and most (80%) were female. Gray matter (GM) volume asymmetry was measured using an automated surface-based technique in both ROIs and exploratory analyses. In the ROI analysis, a significant difference between LLD and RLD was found in the insula. No differences were found in planum temporale (PT), pars opercularis (POp), pars triangularis (PTr), or Heschl's gyrus (HG). The PT, POp, insula, and HG were all significantly left lateralized in both LLD and RLD participants. Both the positive and negative ROI findings replicate a previous study using manually labeled ROIs in a different cohort [Keller, S. S., Roberts, N., Garcia-Finana, M., Mohammadi, S., Ringelstein, E. B., Knecht, S., et al. Can the language-dominant hemisphere be predicted by brain anatomy? Journal of Cognitive Neuroscience, 23, 2013-2029, 2011]. The exploratory analysis was accomplished using a new surface-based registration that aligns cortical folding patterns across both subject and hemisphere. A small but significant cluster was found in the superior temporal gyrus that overlapped with the PT. A cluster was also found in the ventral occipitotemporal cortex corresponding to the visual word recognition area. The surface-based analysis also makes it possible to disentangle the effects of GM volume, thickness, and surface area while removing the effects of curvature. For both the ROI and exploratory analyses, the difference between LLD and RLD volume laterality was most strongly driven by differences in surface area and not cortical thickness. Overall, there were surprisingly few differences in GM volume asymmetry between LLD and RLD indicating that gross morphometric asymmetry is only subtly related to functional language laterality.

摘要

在大脑功能中,语言是最偏侧化的功能之一。大脑皮质的语言区也是大脑中最不对称的区域之一。一个悬而未决的问题是,功能的不对称是否与解剖结构的不对称有关。为了解决这个问题,我们对 34 名被 fMRI 显示为左半球语言优势(LLD)的参与者和 21 名被显示为非典型右半球优势(RLD)的参与者进行了解剖学不对称性测量。所有参与者均为健康的左撇子,其中大多数(80%)为女性。使用基于表面的自动技术在 ROI 和探索性分析中测量了灰质(GM)体积不对称性。在 ROI 分析中,在岛叶发现了 LLD 和 RLD 之间的显著差异。在颞上回(PT)、额下回(POp)、三角部(PTr)或海氏回(HG)中未发现差异。在 LLD 和 RLD 参与者中,PT、POp、岛叶和 HG 均明显向左侧偏侧化。无论是阳性还是阴性 ROI 发现都复制了先前一项使用手动标记 ROI 在不同队列中进行的研究[Keller,S.S.,Roberts,N.,Garcia-Finana,M.,Mohammadi,S.,Ringelstein,E.B.,Knecht,S.等。大脑解剖结构能否预测语言优势半球?认知神经科学杂志,23,2013-2029,2011]。探索性分析是使用新的基于表面的配准完成的,该配准在主体和半球之间对齐皮质折叠模式。在颞上回中发现了一个较小但显著的簇,与 PT 重叠。在与视觉单词识别区域相对应的腹侧枕颞叶皮层中也发现了一个簇。基于表面的分析还使得能够在消除曲率影响的同时,区分 GM 体积、厚度和表面积的影响。对于 ROI 和探索性分析,LLD 和 RLD 体积偏侧性的差异主要受表面积差异驱动,而不是皮质厚度差异驱动。总体而言,LLD 和 RLD 之间的 GM 体积不对称差异非常小,这表明总体形态不对称与功能语言偏侧性只有细微的关系。

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