Gootjes Liselotte, Scheltens Philip, Van Strien Jan W, Bouma Anke
Institute of Psychology, Faculty of Social Sciences, Erasmus University Rotterdam, Rotterdam, The Netherlands.
Neuropsychologia. 2007 Jun 11;45(10):2322-32. doi: 10.1016/j.neuropsychologia.2007.02.014. Epub 2007 Feb 25.
Cortical 'disconnection', involving disruption of white matter tracts in the brain, has been hypothesized as a mechanism of age-related cognitive decline. Diffuse hyperintensities in the white matter (so called white matter hyperintensities, WMH) on T2-weighted MRI scans are regarded to represent ischemic damage of the subcortical fiber system and are found to be increased with advanced age. In the present study, we examined whether WMH might be a mediating factor for age-effects in dichotic listening. For that purpose, we examined the association between age, deep or subcortical white matter hyperintensities (DWMH), periventricular hyperintensities (PVH) and dichotic listening performance in healthy older adults with ages ranging from 50 to 81 years. We found decreased dichotic listening performance with increasing age, specifically for the left ear (LE) but not the right ear (RE) in a standard unbiased-attention condition, and for the unattended ears but not the attended ears in conditions in which attention was controlled. Interestingly, hierarchical regression analyses revealed that the age-effect is partially mediated by DWMH specifically in the hemisphere contralateral to the attended ear. Moreover, we found indications that RE performance is specifically affected by DWMH in the right and left frontal and temporal areas, and that LE performance is mostly affected by DWMH selectively in the left hemisphere, including the left temporal area. The present study underlines the idea that disconnectivity is involved in age-related cognitive decline.
大脑皮层“断开连接”,涉及大脑白质束的破坏,被认为是与年龄相关的认知衰退的一种机制。T2加权磁共振成像扫描中白质的弥漫性高信号(即所谓的白质高信号,WMH)被认为代表皮质下纤维系统的缺血性损伤,并且发现其会随着年龄增长而增加。在本研究中,我们检验了WMH是否可能是双耳分听中年龄效应的一个中介因素。为此,我们研究了年龄在50至81岁之间的健康老年人中,年龄、深部或皮质下白质高信号(DWMH)、脑室周围高信号(PVH)与双耳分听表现之间的关联。我们发现,在标准无偏注意条件下,随着年龄增长,双耳分听表现下降,具体表现为左耳(LE)而非右耳(RE),在注意力得到控制的条件下,是未被注意的耳朵而非被注意的耳朵。有趣的是,分层回归分析显示,年龄效应部分由DWMH介导,特别是在与被注意耳朵对侧的半球。此外,我们发现有迹象表明,RE表现特别受右额叶和颞叶以及左额叶和颞叶DWMH的影响,而LE表现主要受左半球(包括左颞叶)DWMH的选择性影响。本研究强调了断开连接与年龄相关认知衰退有关这一观点。