Biology Reference
In-Depth Information
Fontán-Lozano, A., Sáez-Cassanelli, J.L., Inda, M.C., de los Santos-Arteaga, M., Sierra-
Dominguez, S.A., López-Lluch, G., Delgado-Garcia, J.M., and Carrión, A.M. (2007).
Caloric restriction increases learning consolidation and facilitates synaptic plasticity
through mechanisms dependent on NR2B subunits of the NMDA receptor. Journal of
Neuroscience, 27, 10185-10195.
Frade, J.M., and Barde, Y.A. (1998). Nerve growth factor: two receptors, multiple functions.
BioEssays, 20, 137-145.
Geddes, J.W., Monaghan, D.T., Cotman, C.W., Lott, I.T., Kim, R.C., and Chui, H.C. (1985).
Plasticity of hippocampal circuitry in Alzheimer's disease. Science, 230, 1179-1181.
Gehler, S., Shaw, A., Sarmiere, P., Bamburg, J., and Letourneau, P. (2004). Brain-derived
neurotrophic factor regulation of retinal growth cone filopodial dynamics is mediated
through actin depolymerizing factor/cofilin. Journal of Neuroscience, 24, 10741-10749.
Georganopoulou, D.G., Chang, L., Nam, J.M., Thaxton, C.S., Mufson, E.J., Klein, W.L., and
Mirkin, C.A. (2005). Nanoparticle-based detection in cerebrospinal fluid of a soluble
pathogenic biomarker for Alzheimer's disease. Proceedings of the National Academy of
Sciences, USA 102, 2273-2276.
Gerozissis, K. (2003). Brain insulin: regulation, mechanisms of action and functions. Cellular
and Molecular Neurobiology, 23, 1-25.
Gonatas, N.K., Anderson, W., and Evangelista, I. (1967). The contribution of altered synapses
in the senile plaque: an electron microscopic study in Alzheimer's dementia. Journal of
Neuropathology and Experimental Neurology, 26, 25-39.
Gong, Y., Chang, L., Viola, K.L., Lacor, P.N., Lambert, M.P., Finch, C.F., Krafft, G.A., and
Klein, W.L. (2003). Alzheimer's disease affected brain: presence of oligomeric Aβ
ligands (ADDLs) suggests a molecular basis for reversible memory loss. Proceedings of
the National Academy of Sciences, USA 100, 10417-10422.
Goodman, C.S. (1996). mechanisms and molecules that control growth cone guidance.
Annual Review of Neuroscience, 19, 341-377.
Goshima, Y., Nakamura, F., Strittmatter, P., and Strittmatter, S.M. (1995). Collapsin-induced
growth cone collapse mediated by an intracellular protein related to UNC-33. Nature,
376, 509-514.
Green, K.N., Martinez-Coria, H., Khashwji, H., Hall, E.B., Yurko-Mauro, K.A., Ellis, L., and
LaFerla, F.M. (2007). Dietary docosahexaenoic acid and docosapentaenoic acid
ameliorate amyloid-β and tau pathology via a mechanism involving presenilin 1 levels.
Journal of Neuroscience, 27, 4385-4395.
Grimm, M.O.W., Grimm, H.S., and Hartmann, T. (2007). Amyloid beta as a regulator of lipid
homeostasis. Trends in Molecular Medicine, 13, 337-344.
Grossman, A.W, Elisseou, N.M, McKinney, B.C., and Greenough, W.T (2006). Hippocampal
pyramidal cells in adult Fmr1 knockout mice exhibit an immature-appearing profile of
dendritic spines. Brain Research, 1084, 158-164.
Guan, Z., Guistetto, M., Lomvardas, S, Kim, J.H., Miniaci, M.C., Schwartz, J.H., Thanos, D.,
and Kandel, E.R. (2002). Integration of long-term-memory-related synaptic plasticity
involves bidirectional regulation of gene expression and chromatin structure. Cell, 111,
483-493.
Search WWH ::




Custom Search