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多模态磁共振成像揭示了先天性重度失明患者大脑中大规模的结构和功能连接变化。

Multimodal MR-imaging reveals large-scale structural and functional connectivity changes in profound early blindness.

作者信息

Bauer Corinna M, Hirsch Gabriella V, Zajac Lauren, Koo Bang-Bon, Collignon Olivier, Merabet Lotfi B

机构信息

Laboratory for Visual Neuroplasticity. Massachusetts Eye and Ear Infirmary, Harvard Medical School, Boston, MA, United States of America.

Center for Biomedical Imaging. Boston University School of Medicine, Boston, MA, United States of America.

出版信息

PLoS One. 2017 Mar 22;12(3):e0173064. doi: 10.1371/journal.pone.0173064. eCollection 2017.

Abstract

In the setting of profound ocular blindness, numerous lines of evidence demonstrate the existence of dramatic anatomical and functional changes within the brain. However, previous studies based on a variety of distinct measures have often provided inconsistent findings. To help reconcile this issue, we used a multimodal magnetic resonance (MR)-based imaging approach to provide complementary structural and functional information regarding this neuroplastic reorganization. This included gray matter structural morphometry, high angular resolution diffusion imaging (HARDI) of white matter connectivity and integrity, and resting state functional connectivity MRI (rsfcMRI) analysis. When comparing the brains of early blind individuals to sighted controls, we found evidence of co-occurring decreases in cortical volume and cortical thickness within visual processing areas of the occipital and temporal cortices respectively. Increases in cortical volume in the early blind were evident within regions of parietal cortex. Investigating white matter connections using HARDI revealed patterns of increased and decreased connectivity when comparing both groups. In the blind, increased white matter connectivity (indexed by increased fiber number) was predominantly left-lateralized, including between frontal and temporal areas implicated with language processing. Decreases in structural connectivity were evident involving frontal and somatosensory regions as well as between occipital and cingulate cortices. Differences in white matter integrity (as indexed by quantitative anisotropy, or QA) were also in general agreement with observed pattern changes in the number of white matter fibers. Analysis of resting state sequences showed evidence of both increased and decreased functional connectivity in the blind compared to sighted controls. Specifically, increased connectivity was evident between temporal and inferior frontal areas. Decreases in functional connectivity were observed between occipital and frontal and somatosensory-motor areas and between temporal (mainly fusiform and parahippocampus) and parietal, frontal, and other temporal areas. Correlations in white matter connectivity and functional connectivity observed between early blind and sighted controls showed an overall high degree of association. However, comparing the relative changes in white matter and functional connectivity between early blind and sighted controls did not show a significant correlation. In summary, these findings provide complimentary evidence, as well as highlight potential contradictions, regarding the nature of regional and large scale neuroplastic reorganization resulting from early onset blindness.

摘要

在严重失明的情况下,大量证据表明大脑内部存在显著的解剖学和功能变化。然而,以往基于各种不同测量方法的研究往往得出不一致的结果。为了有助于解决这个问题,我们采用了一种基于多模态磁共振(MR)的成像方法,以提供有关这种神经可塑性重组的补充性结构和功能信息。这包括灰质结构形态测量、白质连通性和完整性的高角分辨率扩散成像(HARDI)以及静息态功能连通性MRI(rsfcMRI)分析。将早期失明个体的大脑与视力正常的对照组进行比较时,我们发现枕叶和颞叶皮质视觉处理区域的皮质体积和皮质厚度分别同时出现减少的证据。早期失明者顶叶皮质区域的皮质体积增加明显。使用HARDI研究白质连接发现,两组比较时存在连接性增加和减少的模式。在盲人中,白质连接性增加(以纤维数量增加为指标)主要偏向左侧,包括涉及语言处理的额叶和颞叶区域之间。额叶和体感区域以及枕叶和扣带回皮质之间的结构连接性明显降低。白质完整性(以定量各向异性或QA为指标)的差异也与观察到的白质纤维数量模式变化总体一致。静息态序列分析显示,与视力正常的对照组相比,盲人的功能连通性既有增加也有减少。具体而言,颞叶和额下回区域之间的连通性增加明显。枕叶与额叶和体感运动区域之间以及颞叶(主要是梭状回和海马旁回)与顶叶、额叶和其他颞叶区域之间的功能连通性降低。早期失明者与视力正常的对照组之间观察到的白质连通性和功能连通性相关性显示出总体高度关联。然而,比较早期失明者与视力正常的对照组之间白质和功能连通性的相对变化并未显示出显著相关性。总之,这些发现提供了关于早期失明导致的区域和大规模神经可塑性重组性质的补充证据,并突出了潜在的矛盾之处。

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