Lyness Rebecca C, Alvarez I, Sereno Martin I, MacSweeney Mairéad
Cognitive and Perceptual Brain Sciences, 26 Bedford Way, University College London, London WC1H 0AP, UK.
Institute of Child Health, University College London, London WC1N 1EH, UK.
Neuroimage. 2014 Oct 15;100:347-57. doi: 10.1016/j.neuroimage.2014.05.077. Epub 2014 Jun 5.
There is evidence of both crossmodal and intermodal plasticity in the deaf brain. Here, we investigated whether sub-cortical plasticity, specifically of the thalamus, contributed to this reorganisation. We contrasted diffusion weighted magnetic resonance imaging data from 13 congenitally deaf and 13 hearing participants, all of whom had learnt British Sign Language after 10 years of age. Connectivity based segmentation of the thalamus revealed changes to mean and radial diffusivity in occipital and frontal regions, which may be linked to enhanced peripheral visual acuity, and differences in how visual attention is deployed in the deaf group. Using probabilistic tractography, tracts were traced between the thalamus and its cortical targets, and microstructural measurements were extracted from these tracts. Group differences were found in microstructural measurements of occipital, frontal, somatosensory, motor and parietal thalamo-cortical tracts. Our findings suggest that there is sub-cortical plasticity in the deaf brain, and that white matter alterations can be found throughout the deaf brain, rather than being restricted to, or focussed in the auditory cortex.
有证据表明,聋人的大脑存在跨模态和多模态可塑性。在此,我们研究了皮层下可塑性,特别是丘脑的可塑性,是否促成了这种重组。我们对比了13名先天性聋人和13名听力正常参与者的扩散加权磁共振成像数据,所有参与者均在10岁以后学习了英国手语。基于连通性的丘脑分割显示,枕叶和额叶区域的平均扩散率和径向扩散率发生了变化,这可能与周边视力增强有关,也与聋人群体中视觉注意力的分配差异有关。使用概率纤维束成像技术,追踪了丘脑与其皮层靶点之间的纤维束,并从这些纤维束中提取了微观结构测量值。在枕叶、额叶、体感、运动和顶叶丘脑-皮层纤维束的微观结构测量中发现了组间差异。我们的研究结果表明,聋人的大脑存在皮层下可塑性,并且在整个聋人大脑中都能发现白质改变,而不仅限于或集中在听觉皮层。