Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
5R01HD045224-05
Application #
7160540
Study Section
Pediatrics Subcommittee (CHHD)
Program Officer
Oster-Granite, Mary Lou
Project Start
2003-05-13
Project End
2008-12-31
Budget Start
2007-01-01
Budget End
2008-12-31
Support Year
5
Fiscal Year
2007
Total Cost
$251,332
Indirect Cost
Name
University of Colorado Denver
Department
Pediatrics
Type
Schools of Medicine
DUNS #
041096314
City
Aurora
State
CO
Country
United States
Zip Code
80045
Powers, Brian E; Kelley, Christy M; Velazquez, Ramon et al. (2017) Maternal choline supplementation in a mouse model of Down syndrome: Effects on attention and nucleus basalis/substantia innominata neuron morphology in adult offspring. Neuroscience 340:501-514
Kelley, Christy M; Ash, Jessica A; Powers, Brian E et al. (2016) Effects of Maternal Choline Supplementation on the Septohippocampal Cholinergic System in the Ts65Dn Mouse Model of Down Syndrome. Curr Alzheimer Res 13:84-96
Ash, Jessica A; Velazquez, Ramon; Kelley, Christy M et al. (2014) Maternal choline supplementation improves spatial mapping and increases basal forebrain cholinergic neuron number and size in aged Ts65Dn mice. Neurobiol Dis 70:32-42
Rachubinski, Angela L; Maclean, Kenneth N; Evans, Jeffrey R et al. (2012) Modulating cognitive deficits and tau accumulation in a mouse model of aging Down syndrome through neonatal implantation of neural progenitor cells. Exp Gerontol 47:723-33
Rachubinski, Angela L; Crowley, Shannon K; Sladek Jr, John R et al. (2012) Effects of neonatal neural progenitor cell implantation on adult neuroanatomy and cognition in the Ts65Dn model of Down syndrome. PLoS One 7:e36082
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de Souza, Fabio M Simoes; Busquet, Nicolas; Blatner, Megan et al. (2011) Galantamine improves olfactory learning in the Ts65Dn mouse model of Down syndrome. Sci Rep 1:137
Moon, Jisook; Chen, May; Gandhy, Shruti U et al. (2010) Perinatal choline supplementation improves cognitive functioning and emotion regulation in the Ts65Dn mouse model of Down syndrome. Behav Neurosci 124:346-61