application) This training program in the Neurobiology of Aging is designed to provide high quality research training for select pre-and postdoctoral students to prepare them for successful independent careers on the basic mechanisms of brain aging. The program, begun in 1983, is designed to provide multidiciplinary training to better understand the basic neural events underlying successful aging, its maintenance and plasticity, and the key events that compromise learning and memory and higher cognitive function. To accomplish this the applicants have assembled a group of senior and junior investigators recognized for their expertise in key areas of research and technology, who have a history and continued motivation to collaborate, and are dedicated to high quality training in the field. Since the last renewal the training program has increased their number of preceptors and research foci available to students. The program includes preceptors from departments in the Schools of Biological Sciences, Chemistry, Engineering and Computer Sciences and Medicine in order to reflect advances in new evolving areas and to train the next generation of researchers. The primary training is one on one mentoring of trainees. The training program enhances this by providing a forum for building the essential knowledge base through the graduate brain aging track, formal courses, the brain aging seminar series, and specialized programs tailored for unusual students and projects. The program also stimulates productive, innovative research and unique research opportunities for trainees through collaborative research among the preceptors. The program has a solid track record of producing quality scientists who enter academia or apply their training and knowledge in industry to address a challenging and serious health problem for the nation and our growing senior population.

Agency
National Institute of Health (NIH)
Institute
National Institute on Aging (NIA)
Type
Institutional National Research Service Award (T32)
Project #
5T32AG000096-18
Application #
6168566
Study Section
National Institute on Aging Initial Review Group (NIA)
Program Officer
Wise, Bradley C
Project Start
1982-09-29
Project End
2003-04-30
Budget Start
2000-05-01
Budget End
2001-04-30
Support Year
18
Fiscal Year
2000
Total Cost
$304,293
Indirect Cost
Name
University of California Irvine
Department
Neurology
Type
Schools of Medicine
DUNS #
161202122
City
Irvine
State
CA
Country
United States
Zip Code
92697
Najafi, Allison R; Crapser, Joshua; Jiang, Shan et al. (2018) A limited capacity for microglial repopulation in the adult brain. Glia 66:2385-2396
Alaghband, Yasaman; Kramár, Enikö; Kwapis, Janine L et al. (2018) CREST in the Nucleus Accumbens Core Regulates Cocaine Conditioned Place Preference, Cocaine-Seeking Behavior, and Synaptic Plasticity. J Neurosci 38:9514-9526
Torres, Maria D; Garcia, Octavio; Tang, Cindy et al. (2018) Dendritic spine pathology and thrombospondin-1 deficits in Down syndrome. Free Radic Biol Med 114:10-14
Morozko, Eva L; Ochaba, Joseph; Hernandez, Sarah J et al. (2018) Longitudinal Biochemical Assay Analysis of Mutant Huntingtin Exon 1 Protein in R6/2 Mice. J Huntingtons Dis 7:321-335
Kwapis, Janine L; Alaghband, Yasaman; Kramár, Enikö A et al. (2018) Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory. Nat Commun 9:3323
Ng, Chi-Wing; Elias, Gabriel A; Asem, Judith S A et al. (2018) Nonspatial sequence coding varies along the CA1 transverse axis. Behav Brain Res 354:39-47
Reagh, Zachariah M; Noche, Jessica A; Tustison, Nicholas J et al. (2018) Functional Imbalance of Anterolateral Entorhinal Cortex and Hippocampal Dentate/CA3 Underlies Age-Related Object Pattern Separation Deficits. Neuron 97:1187-1198.e4
Franich, Nicholas R; Basso, Manuela; André, Emily A et al. (2018) Striatal Mutant Huntingtin Protein Levels Decline with Age in Homozygous Huntington's Disease Knock-In Mouse Models. J Huntingtons Dis 7:137-150
Stark, Shauna M; Reagh, Zachariah M; Yassa, Michael A et al. (2018) What's in a context? Cautions, limitations, and potential paths forward. Neurosci Lett 680:77-87
Holbrook, Andrew; Vandenberg-Rodes, Alexander; Fortin, Norbert et al. (2017) A Bayesian supervised dual-dimensionality reduction model for simultaneous decoding of LFP and spike train signals. Stat (Int Stat Inst) 6:53-67

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