Centre of Bio-Medical Research, Sanjay Gandhi Postgraduate Institute of Medical Sciences Campus, Lucknow, India.
Centre of Bio-Medical Research, Sanjay Gandhi Postgraduate Institute of Medical Sciences Campus, Lucknow, India.
Brain Cogn. 2021 Mar;148:105676. doi: 10.1016/j.bandc.2020.105676. Epub 2020 Dec 31.
A loss of hearing in early life leads to diversifications of important white matter networks. Previous studies related to WM alterations in adult deaf individuals mainly involved univariate analysis of fractional anisotropy (FA) data and volumetric analysis, which yielded inconsistent results. To address this issue, we investigated the FA value alterations in 38 prelingual adult deaf individuals and compared the results with those obtained from the same number of adults with normal hearing by using univariate (tract-based spatial statistics) and multivariate (source-based morphometry) methods. The findings from tract-based spatial statistics suggested an increased FA value in regions such as the left cingulate gyrus, left inferior frontal occipital fasciculus, left inferior longitudinal fasciculus and superior corona radiata; however, the results indicated a decreased FA value in the left planum temporale of adult deaf individuals. While source-based morphometry analysis outlined higher FA values in regions such as bilateral lingual gyrus, bilateral cerebellum, bilateral putamen and bilateral caudate, a considerable decrease was observed in the bilateral superior temporal region of the deaf group. These alterations in multiple neural regions might be linked to the compensatory cross-modal reorganizations attributed to early hearing loss.
早期听力丧失会导致重要的白质网络发生多样化。先前有关成年失聪个体 WM 改变的研究主要涉及各向异性分数 (FA) 数据和容积分析的单变量分析,这些结果不一致。为了解决这个问题,我们使用单变量(基于束的空间统计学)和多变量(基于源的形态测量学)方法,研究了 38 名语前成年失聪个体的 FA 值改变,并将结果与相同数量的听力正常的成年人进行了比较。基于束的空间统计学的研究结果表明,左扣带回、左额枕下额束、左下纵束和上辐射冠等区域的 FA 值增加;然而,研究结果表明,成年失聪个体的左颞平面 FA 值降低。虽然基于源的形态测量学分析概述了双侧舌回、双侧小脑、双侧壳核和双侧尾状核等区域的 FA 值较高,但失聪组双侧颞上区的 FA 值明显降低。这些多个神经区域的改变可能与早期听力损失引起的代偿性跨模态重组有关。