Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS045193-02
Application #
6685196
Study Section
Integrative, Functional and Cognitive Neuroscience 8 (IFCN)
Program Officer
Talley, Edmund M
Project Start
2002-12-01
Project End
2006-11-30
Budget Start
2003-12-01
Budget End
2004-11-30
Support Year
2
Fiscal Year
2004
Total Cost
$361,475
Indirect Cost
Name
Princeton University
Department
Biochemistry
Type
Schools of Arts and Sciences
DUNS #
002484665
City
Princeton
State
NJ
Country
United States
Zip Code
08544
Badura, Aleksandra; Verpeut, Jessica L; Metzger, Julia W et al. (2018) Normal cognitive and social development require posterior cerebellar activity. Elife 7:
Giovannucci, A; Pnevmatikakis, E A; Deverett, B et al. (2018) Automated gesture tracking in head-fixed mice. J Neurosci Methods 300:184-195
Deverett, Ben; Koay, Sue Ann; Oostland, Marlies et al. (2018) Cerebellar involvement in an evidence-accumulation decision-making task. Elife 7:
Giovannucci, Andrea; Badura, Aleksandra; Deverett, Ben et al. (2017) Cerebellar granule cells acquire a widespread predictive feedback signal during motor learning. Nat Neurosci 20:727-734
Cope, Elise C; Briones, Brandy A; Brockett, Adam T et al. (2016) Immature Neurons and Radial Glia, But Not Astrocytes or Microglia, Are Altered in Adult Cntnap2 and Shank3 Mice, Models of Autism. eNeuro 3:
Kloth, Alexander D; Badura, Aleksandra; Li, Amy et al. (2015) Cerebellar associative sensory learning defects in five mouse autism models. Elife 4:e06085
Najafi, Farzaneh; Giovannucci, Andrea; Wang, Samuel S-H et al. (2014) Coding of stimulus strength via analog calcium signals in Purkinje cell dendrites of awake mice. Elife 3:e03663
Piochon, Claire; Kloth, Alexander D; Grasselli, Giorgio et al. (2014) Cerebellar plasticity and motor learning deficits in a copy-number variation mouse model of autism. Nat Commun 5:5586
Najafi, Farzaneh; Giovannucci, Andrea; Wang, Samuel S-H et al. (2014) Sensory-driven enhancement of calcium signals in individual Purkinje cell dendrites of awake mice. Cell Rep 6:792-798
Wang, Samuel S-H; Kloth, Alexander D; Badura, Aleksandra (2014) The cerebellum, sensitive periods, and autism. Neuron 83:518-32

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