This application addresses broad Challenge Area (01) Behavior, Behavioral Change, and Prevention and specific Challenge Topic, 01-AG-102: Neural mechanisms of behavioral change. Cognitive decline in normal aging is a very important societal problem, which impacts millions of people worldwide. Specifically, normal aging is accompanied by declines in working memory and executive function/attention control, as well as in long term memory and speed of processing. Thus, increasing knowledge about the possible predictors of age- related cognitive impairments and their interactions can yield substantial societal and economic benefits, by providing means of early detection and thus improving the chances of successful prevention and/or treatment. Recent studies have emphasized that physical activity and fitness may help stave off some of the effect of aging on cognition, and specifically those related to working memory and executive function, although the exact mechanisms through which these gains are obtained are not yet completely understood. In this work we will conduct a detailed investigation of the possible mediating role that the health status of the cerebrovascular system may have on the beneficial effects of physical fitness on brain anatomy and function and cognitive performance. Our approach is based on the assumption that all the phenomena under study (physical fitness/activity, cerebrovascular health, brain anatomy and function, and cognitive function) are in fact complex and multifaceted and best studied using a multivariate approach. Therefore, for each of them, we take multiple measures at multiple levels. We will investigate naturally-occurring variability in a sample of normally-aging adults comprising four age groups (50-60, 60-70, 70-80, and 80-90 years old), which will be measured twice at 12 months distance (thus affording both cross-sectional and short-term longitudinal analyses). A multimodal imaging approach based on a combination of magnetic resonance imaging, diffusive near-infrared spectroscopic imaging, and electrophysiological methods will be used to provide maps of both cerebrovascular status and brain anatomy and function. Societal Impact. Cognitive decline in aging affects millions of people worldwide. Its early detection may lead to prevention and improvement in intervention practices, thus providing incalculable benefits to society both in economic and humanitarian terms. Physical activity regimes have shown to be beneficial to cognitive aging. Therefore, a better understanding of the mechanisms through which these benefits are accrued is of enormous practical significance. In addition, following the guidelines of ARRA 2009 for these Challenge proposals, we underscore the fact that this proposal, if funded, will generate one new position (graduate research assistant) and allow for the retention of two additional positions (senior research scientist and research specialist) who may otherwise lose employment. It is further expected that, through this funding, these investigators will receive valuable training in the biomedical sciences, which will make them more competitive on job market in the future.

Public Health Relevance

Cognitive decline in aging affects millions of people worldwide. Its early detection may lead to prevention and improvement in intervention practices, thus providing incalculable benefits to society both in economic and humanitarian terms. Physical activity regimes have shown to be beneficial to cognitive aging. Therefore, a better understanding of the mechanisms through which these benefits are accrued is of enormous practical significance. In addition, following the guidelines of ARRA 2009 for these Challenge proposals, we underscore the fact that this proposal, if funded, will generate one new position (graduate research assistant) and allow for the retention of two additional positions (senior research scientist and research specialist) who may otherwise lose employment. It is further expected that, through this funding, these investigators will receive valuable training in the biomedical sciences, which will make them more competitive on job market in the future.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
NIH Challenge Grants and Partnerships Program (RC1)
Project #
5RC1AG035927-02
Application #
7937979
Study Section
Special Emphasis Panel (ZRG1-BBBP-J (58))
Program Officer
Wagster, Molly V
Project Start
2009-09-30
Project End
2012-08-31
Budget Start
2010-09-01
Budget End
2012-08-31
Support Year
2
Fiscal Year
2010
Total Cost
$389,933
Indirect Cost
Name
University of Illinois Urbana-Champaign
Department
Type
Organized Research Units
DUNS #
041544081
City
Champaign
State
IL
Country
United States
Zip Code
61820
Walker, John A; Low, Kathy A; Fletcher, Mark A et al. (2017) Hippocampal structure predicts cortical indices of reactivation of related items. Neuropsychologia 95:182-192
Tan, Chin Hong; Low, Kathy A; Schneider-Garces, Nils et al. (2016) Optical measures of changes in cerebral vascular tone during voluntary breath holding and a Sternberg memory task. Biol Psychol 118:184-194
Fletcher, Mark A; Low, Kathy A; Boyd, Rachel et al. (2016) Comparing Aging and Fitness Effects on Brain Anatomy. Front Hum Neurosci 10:286
Fabiani, Monica; Gordon, Brian A; Maclin, Edward L et al. (2014) Neurovascular coupling in normal aging: a combined optical, ERP and fMRI study. Neuroimage 85 Pt 1:592-607
Fabiani, Monica; Low, Kathy A; Tan, Chin-Hong et al. (2014) Taking the pulse of aging: mapping pulse pressure and elasticity in cerebral arteries with optical methods. Psychophysiology 51:1072-88
Gordon, Brian A; Tse, Chun-Yu; Gratton, Gabriele et al. (2014) Spread of activation and deactivation in the brain: does age matter? Front Aging Neurosci 6:288
Fabiani, Monica (2012) It was the best of times, it was the worst of times: a psychophysiologist's view of cognitive aging. Psychophysiology 49:283-304
Ouyang, Cheng; Sutton, Bradley P (2012) Localized blood flow imaging using quantitative flow-enhanced signal intensity. Magn Reson Med 67:660-8
Pilkinton, David T; Gaddam, Santosh R; Reddy, Ravinder (2011) Characterization of paramagnetic effects of molecular oxygen on blood oxygenation level-dependent-modulated hyperoxic contrast studies of the human brain. Magn Reson Med 66:794-801
Ouyang, Cheng; Sutton, Bradley P (2011) Pseudo-continuous transfer insensitive labeling technique. Magn Reson Med 66:768-76

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