Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS012005-22
Application #
2262380
Study Section
Neurology B Subcommittee 2 (NEUB)
Project Start
1978-09-26
Project End
1997-03-31
Budget Start
1996-04-01
Budget End
1997-03-31
Support Year
22
Fiscal Year
1996
Total Cost
Indirect Cost
Name
Massachusetts General Hospital
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02199
Caviness Jr, Verne S; Nowakowski, Richard S; Bhide, Pradeep G (2009) Neocortical neurogenesis: morphogenetic gradients and beyond. Trends Neurosci 32:443-50
Suter, Bernhard; Nowakowski, Richard S; Bhide, Pradeep G et al. (2007) Navigating neocortical neurogenesis and neuronal specification: a positional information system encoded by neurogenetic gradients. J Neurosci 27:10777-84
Tarui, T; Takahashi, T; Nowakowski, R S et al. (2005) Overexpression of p27 Kip 1, probability of cell cycle exit, and laminar destination of neocortical neurons. Cereb Cortex 15:1343-55
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Takahashi, T; Kinsman, S; Makris, N et al. (2003) Semilobar holoprosencephaly with midline 'seam': a topologic and morphogenetic model based upon MRI analysis. Cereb Cortex 13:1299-312
Cai, Li; Hayes, Nancy L; Takahashi, Takao et al. (2002) Size distribution of retrovirally marked lineages matches prediction from population measurements of cell cycle behavior. J Neurosci Res 69:731-44
Goto, T; Takahashi, T; Miyama, S et al. (2002) Developmental regulation of the effects of fibroblast growth factor-2 and 1-octanol on neuronogenesis: implications for a hypothesis relating to mitogen-antimitogen opposition. J Neurosci Res 69:714-22
Mitsuhashi, T; Aoki, Y; Eksioglu, Y Z et al. (2001) Overexpression of p27Kip1 lengthens the G1 phase in a mouse model that targets inducible gene expression to central nervous system progenitor cells. Proc Natl Acad Sci U S A 98:6435-40
Miyama, S; Takahashi, T; Goto, T et al. (2001) Continuity with ganglionic eminence modulates interkinetic nuclear migration in the neocortical pseudostratified ventricular epithelium. Exp Neurol 169:486-95

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