Brain white matter structure and information processing speed in healthy older age

被引:0
|
作者
Ksenia A. Kuznetsova
Susana Muñoz Maniega
Stuart J. Ritchie
Simon R. Cox
Amos J. Storkey
John M. Starr
Joanna M. Wardlaw
Ian J. Deary
Mark E. Bastin
机构
[1] University of Edinburgh,Doctoral Training Centre in Neuroinformatics and Computational Neuroscience, School of Informatics
[2] University of Edinburgh,Institute for Adaptive and Neural Computation, School of Informatics
[3] University of Edinburgh,Brain Research Imaging Centre, Neuroimaging Sciences
[4] Scottish Imaging Network,Centre for Cognitive Ageing and Cognitive Epidemiology (CCACE)
[5] A Platform for Scientific Excellence (SINAPSE) Collaboration,Department of Psychology
[6] University of Edinburgh,Alzheimer Scotland Dementia Research Centre
[7] University of Edinburgh,undefined
[8] University of Edinburgh,undefined
来源
Brain Structure and Function | 2016年 / 221卷
关键词
Ageing; White matter structure; Information processing speed; Diffusion MRI;
D O I
暂无
中图分类号
学科分类号
摘要
Cognitive decline, especially the slowing of information processing speed, is associated with normal ageing. This decline may be due to brain cortico-cortical disconnection caused by age-related white matter deterioration. We present results from a large, narrow age range cohort of generally healthy, community-dwelling subjects in their seventies who also had their cognitive ability tested in youth (age 11 years). We investigate associations between older age brain white matter structure, several measures of information processing speed and childhood cognitive ability in 581 subjects. Analysis of diffusion tensor MRI data using Tract-based Spatial Statistics (TBSS) showed that all measures of information processing speed, as well as a general speed factor composed from these tests (gspeed), were significantly associated with fractional anisotropy (FA) across the white matter skeleton rather than in specific tracts. Cognitive ability measured at age 11 years was not associated with older age white matter FA, except for the gspeed-independent components of several individual processing speed tests. These results indicate that quicker and more efficient information processing requires global connectivity in older age, and that associations between white matter FA and information processing speed (both individual test scores and gspeed), unlike some other aspects of later life brain structure, are generally not accounted for by cognitive ability measured in youth.
引用
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页码:3223 / 3235
页数:12
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