Madden David J, Bennett Ilana J, Burzynska Agnieszka, Potter Guy G, Chen Nan-Kuei, Song Allen W
Brain Imaging and Analysis Center, Duke University Medical Center, Durham, NC 27710, USA.
Biochim Biophys Acta. 2012 Mar;1822(3):386-400. doi: 10.1016/j.bbadis.2011.08.003. Epub 2011 Aug 16.
In this article we review recent research on diffusion tensor imaging (DTI) of white matter (WM) integrity and the implications for age-related differences in cognition. Neurobiological mechanisms defined from DTI analyses suggest that a primary dimension of age-related decline in WM is a decline in the structural integrity of myelin, particularly in brain regions that myelinate later developmentally. Research integrating behavioral measures with DTI indicates that WM integrity supports the communication among cortical networks, particularly those involving executive function, perceptual speed, and memory (i.e., fluid cognition). In the absence of significant disease, age shares a substantial portion of the variance associated with the relation between WM integrity and fluid cognition. Current data are consistent with one model in which age-related decline in WM integrity contributes to a decreased efficiency of communication among networks for fluid cognitive abilities. Neurocognitive disorders for which older adults are at risk, such as depression, further modulate the relation between WM and cognition, in ways that are not as yet entirely clear. Developments in DTI technology are providing a new insight into both the neurobiological mechanisms of aging WM and the potential contribution of DTI to understanding functional measures of brain activity. This article is part of a Special Issue entitled: Imaging Brain Aging and Neurodegenerative disease.
在本文中,我们回顾了近期关于白质(WM)完整性的扩散张量成像(DTI)研究及其对认知方面年龄相关差异的影响。DTI分析所确定的神经生物学机制表明,与年龄相关的WM衰退的一个主要维度是髓鞘结构完整性的下降,尤其是在发育后期髓鞘化的脑区。将行为测量与DTI相结合的研究表明,WM完整性支持皮质网络之间的通信,特别是那些涉及执行功能、感知速度和记忆(即流体认知)的网络。在没有重大疾病的情况下,年龄在与WM完整性和流体认知之间关系相关的方差中占很大一部分。目前的数据与一种模型一致,即与年龄相关的WM完整性衰退导致流体认知能力网络之间通信效率降低。老年人易患的神经认知障碍,如抑郁症,会以尚不完全清楚的方式进一步调节WM与认知之间的关系。DTI技术的发展为衰老WM的神经生物学机制以及DTI对理解脑活动功能测量的潜在贡献提供了新的见解。本文是名为:脑老化与神经退行性疾病成像的特刊的一部分。