Literature DB >> 26951390

Sleep Duration and Subsequent Cortical Thinning in Cognitively Normal Older Adults.

Adam P Spira1,2, Christopher E Gonzalez3, Vijay K Venkatraman3, Mark N Wu4, Jennifer Pacheco3,5, Eleanor M Simonsick3, Luigi Ferrucci3, Susan M Resnick3.   

Abstract

STUDY
OBJECTIVES: To determine the association between self-reported sleep duration and cortical thinning among older adults.
METHODS: We studied 122 cognitively normal participants in the Baltimore Longitudinal Study of Aging with a mean age = 66.6 y (range, 51-84) at baseline sleep assessment and 69.5 y (range, 56-86) at initial magnetic resonance imaging (MRI) scan. Participants reported average sleep duration and completed a mean of 7.6 1.5-T MRI scans (range, 3-11), with mean follow-up from initial scan of 8.0 y (range, 2.0-11.8).
RESULTS: In analyses adjusted for age, sex, education, race, and interval between sleep assessment and initial MRI scan, participants reporting > 7 h sleep at baseline had thinner cortex in the inferior occipital gyrus and sulcus of the left hemisphere at initial MRI scan than those reporting 7 h (cluster P < 0.05). In adjusted longitudinal analyses, compared to those reporting 7 h of sleep, participants reporting < 7 h exhibited higher rates of subsequent thinning in the superior temporal sulcus and gyrus, inferior and middle frontal gyrus, and superior frontal sulcus of the left hemisphere, and in the superior frontal gyrus of the right hemisphere; those reporting > 7 h of sleep had higher rates of thinning in the superior frontal and middle frontal gyrus of the left hemisphere (cluster P < 0.05 for all). In sensitivity analyses, adjustment for apolipoprotein E (APOE) e4 genotype reduced or eliminated some effects but revealed others. When reports of < 7 h of sleep were compared to reports of 7 or 8 h combined, there were no significant associations with cortical thinning.
CONCLUSIONS: Among cognitively normal older adults, sleep durations of < 7 h and > 7 h may increase the rate of subsequent frontotemporal gray matter atrophy. Additional studies, including those that use objective sleep measures and investigate mechanisms linking sleep duration to gray matter loss, are needed.
© 2016 Associated Professional Sleep Societies, LLC.

Entities:  

Keywords:  aging; atrophy; cortical thinning; gray matter; neuroimaging; sleep duration

Mesh:

Substances:

Year:  2016        PMID: 26951390      PMCID: PMC4835311          DOI: 10.5665/sleep.5768

Source DB:  PubMed          Journal:  Sleep        ISSN: 0161-8105            Impact factor:   5.849


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