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首页> 外文期刊>Brain research >Cortical thickness analysis and optimized voxel-based morphometry in children and adolescents with prelingually profound sensorineural hearing loss.
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Cortical thickness analysis and optimized voxel-based morphometry in children and adolescents with prelingually profound sensorineural hearing loss.

机译:皮层厚度分析和优化的基于体素的形态计量学的儿童和青少年,具有舌前感音神经性听力损失。

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摘要

Crossmodal neuroplastic changes following auditory deprivation in individuals with profound sensorineural hearing loss (SNHL) have been well documented in previous literature. However, previous studies have shown very little evidence of structural brain changes in individuals with prelingually profound SNHL and no studies have reported significant differences of gray matter (GM) in deaf subjects. Therefore, it is essential to employ a more specific and sensitive technique to detect subtle structural brain differences in deaf individuals. The objective of our study was to investigate neuroanatomical differences in children and adolescents with profound SNHL by cortical thickness analysis and optimized voxel-based morphometry (VBM). T1-weighted volumetric images of 16 children and adolescents with prelingually profound SNHL and 16 hearing controls were analyzed. The ANCOVA analysis revealed a statistically significant decreased average cortical thickness of the whole brain. As to vertex-based analysis, cortical thickness of the deaf subjects showed significant thinning in the left precentral gyrus, right postcentral gyrus, the left superior occipital gyrus and the left fusiform gyrus compared with the hearing subjects. VBM revealed statistically significant focal reduction of white matter (WM) volume in the left middle frontal gyrus and the right inferior occipital gyrus in deaf subjects without statistically significant differences in GM volume between the two groups. These findings demonstrated that structural changes happened not only in the WM but also in the GM of the subjects with prelingually profound SNHL, which have never been reported before in any previous literature. Our results also implicated the potential neuroplastic changes associated with crossmodal reorganization in the brain after auditory deprivation in the early deafness.
机译:在先前的文献中已充分记录了患有严重的感音神经性听力损失(SNHL)的个体在听觉剥夺后的跨模态神经塑性变化。然而,先前的研究显示很少有证据显示患有语言深厚的SNHL的个体的结构性脑部变化,也没有研究报告聋人的灰质(GM)有显着差异。因此,有必要采用一种更具体,更灵敏的技术来检测聋人中细微的大脑结构差异。我们研究的目的是通过皮层厚度分析和优化的基于体素的形态计量学(VBM)来研究患有严重SNHL的儿童和青少年的神经解剖学差异。分析了16名具有深厚SNHL的儿童和青少年和16名听力控制者的T1加权体积图像。 ANCOVA分析显示,整个大脑的平均皮层厚度在统计学上显着降低。关于基于顶点的分析,与听觉受试者相比,聋人的皮质厚度在左中前回,右中后回,左枕后回和梭形回显着变薄。 VBM显示,在聋人中,左中额回和右枕下回的白质(WM)体积在统计学上显着减少,两组之间的GM体积无统计学差异。这些发现表明结构改变不仅发生在WM内,而且发生在具有深厚SNHL的受试者的GM中,这在以前的任何文献中都未曾报道过。我们的研究结果还暗示了早期耳聋后听觉剥夺后与大脑中的多式联运重组相关的潜在神经塑性变化。

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