Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Specialized Center (P50)
Project #
5P50NS006833-41
Application #
7574504
Study Section
National Institute of Neurological Disorders and Stroke Initial Review Group (NSD)
Project Start
Project End
Budget Start
2008-03-01
Budget End
2009-02-28
Support Year
41
Fiscal Year
2008
Total Cost
$60,003
Indirect Cost
Name
Washington University
Department
Type
DUNS #
068552207
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Goyal, Manu S; Vlassenko, Andrei G; Blazey, Tyler M et al. (2017) Loss of Brain Aerobic Glycolysis in Normal Human Aging. Cell Metab 26:353-360.e3
Shannon, Benjamin J; Vaishnavi, Sanjeev Neil; Vlassenko, Andrei G et al. (2016) Brain aerobic glycolysis and motor adaptation learning. Proc Natl Acad Sci U S A 113:E3782-91
Wig, Gagan S; Laumann, Timothy O; Cohen, Alexander L et al. (2014) Parcellating an individual subject's cortical and subcortical brain structures using snowball sampling of resting-state correlations. Cereb Cortex 24:2036-54
Goyal, Manu S; Hawrylycz, Michael; Miller, Jeremy A et al. (2014) Aerobic glycolysis in the human brain is associated with development and neotenous gene expression. Cell Metab 19:49-57
Powers, William J (2014) William M. Feinberg award for excellence in clinical stroke: hemodynamics and stroke risk in carotid artery occlusion. Stroke 45:3123-8
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Power, Jonathan D; Mitra, Anish; Laumann, Timothy O et al. (2014) Methods to detect, characterize, and remove motion artifact in resting state fMRI. Neuroimage 84:320-41
Duchek, Janet M; Balota, David A; Thomas, Jewell B et al. (2013) Relationship between Stroop performance and resting state functional connectivity in cognitively normal older adults. Neuropsychology 27:516-28
Wang, Liang; Brier, Matthew R; Snyder, Abraham Z et al. (2013) Cerebrospinal fluid A?42, phosphorylated Tau181, and resting-state functional connectivity. JAMA Neurol 70:1242-8
Shannon, B J; Dosenbach, R A; Su, Y et al. (2013) Morning-evening variation in human brain metabolism and memory circuits. J Neurophysiol 109:1444-56

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