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Open AccessJournal ArticleDOI

Longitudinal Magnetic Resonance Imaging Studies of Older Adults: A Shrinking Brain

TLDR
MRI scans of 92 nondemented older adults in the Baltimore Longitudinal Study of Aging provide essential information on the rate and regional pattern of age-associated changes against which pathology can be evaluated and suggest slower rates of brain atrophy in individuals who remain medically and cognitively healthy.
Abstract
Age-related loss of brain tissue has been inferred from cross-sectional neuroimaging studies, but direct measurements of gray and white matter changes from longitudinal studies are lacking. We quantified longitudinal magnetic resonance imaging (MRI) scans of 92 nondemented older adults (age 59-85 years at baseline) in the Baltimore Longitudinal Study of Aging to determine the rates and regional distribution of gray and white matter tissue loss in older adults. Using images from baseline, 2 year, and 4 year follow-up, we found significant age changes in gray (p < 0.001) and white (p < 0.001) volumes even in a subgroup of 24 very healthy elderly. Annual rates of tissue loss were 5.4 +/- 0.3, 2.4 +/- 0.4, and 3.1 +/- 0.4 cm3 per year for total brain, gray, and white volumes, respectively, and ventricles increased by 1.4 +/- 0.1 cm3 per year (3.7, 1.3, 2.4, and 1.2 cm3, respectively, in very healthy). Frontal and parietal, compared with temporal and occipital, lobar regions showed greater decline. Gray matter loss was most pronounced for orbital and inferior frontal, cingulate, insular, inferior parietal, and to a lesser extent mesial temporal regions, whereas white matter changes were widespread. In this first study of gray and white matter volume changes, we demonstrate significant longitudinal tissue loss for both gray and white matter even in very healthy older adults. These data provide essential information on the rate and regional pattern of age-associated changes against which pathology can be evaluated and suggest slower rates of brain atrophy in individuals who remain medically and cognitively healthy.

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Journal ArticleDOI

Regional Brain Changes in Aging Healthy Adults: General Trends, Individual Differences and Modifiers

TL;DR: In this paper, the authors present longitudinal measures of five-year change in the regional brain volumes in healthy adults and assess the average and individual differences in volume changes and the effects of age, sex and hypertension with latent difference score modeling.
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The Adaptive Brain: Aging and Neurocognitive Scaffolding

TL;DR: The scaffolding theory of aging and cognition (STAC) is proposed, suggesting that pervasive increased frontal activation with age is a marker of an adaptive brain that engages in compensatory scaffolding in response to the challenges posed by declining neural structures and function.
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Insights into the ageing mind: a view from cognitive neuroscience.

TL;DR: Much remains unknown about how normal ageing affects the neural basis of cognition, but recent research on individual differences in the trajectory of ageing effects is helping to distinguish normal from pathological origins of age-related cognitive changes.
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Motor Control and Aging: Links to Age-Related Brain Structural, Functional, and Biochemical Effects

TL;DR: In general, older adults exhibit involvement of more widespread brain regions for motor control than young adults, particularly the prefrontal cortex and basal ganglia networks, resulting in an imbalance of "supply and demand".
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“Mini-mental state”: A practical method for grading the cognitive state of patients for the clinician

TL;DR: A simplified, scored form of the cognitive mental status examination, the “Mini-Mental State” (MMS) which includes eleven questions, requires only 5-10 min to administer, and is therefore practical to use serially and routinely.

A practical method for grading the cognitive state of patients for the clinician

TL;DR: The Mini-Mental State (MMS) as mentioned in this paper is a simplified version of the standard WAIS with eleven questions and requires only 5-10 min to administer, and is therefore practical to use serially and routinely.
Journal ArticleDOI

Statistical parametric maps in functional imaging: A general linear approach

TL;DR: In this paper, the authors present a general approach that accommodates most forms of experimental layout and ensuing analysis (designed experiments with fixed effects for factors, covariates and interaction of factors).
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Trending Questions (1)
Has the brain been shrinking?

Yes, the longitudinal MRI study on older adults showed significant gray and white matter tissue loss, indicating brain shrinkage even in healthy individuals, with varying regional patterns of decline.