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Development rat brain

Lakshmana MK, Raju TR. 1994. Endosulfan induces small but significant changes in the levels of noradrenaline, dopamine and serotonin in the developing rat brain and deficits in the operant learning performance. Toxicology 91(2) 139-50. [Pg.303]

Isaacson LG, Taylor DH. 1989. Maternal exposure to 1,1,2-trichloroethylene affects myelin in the hippocampal formation of the developing rat. Brain Res 488 403-407. [Pg.272]

Noland-Gerbec EA, Pfohl RJ, Taylor DH, et al. 1986. 2-Deoxyglucose uptake in the developing rat brain upon pre- and postnatal exposure to trichloroethylene. Neurotoxicology 7 157-164. [Pg.282]

Harry GJ, Schmitt TJ, Gong Z, et al. 1996. Lead-induced alterations of glial fibrillary acidic protein (GFAP) in the developing rat brain. Toxicol Appl Pharmacol 139 84-93. [Pg.531]

Banerjee, B. and Chaudhurym, S. Thyroidal regulation of different isoforms of Na,K-ATPase in glial cells of developing rat brain. Life Sci. 69 2409-2417, 2001. [Pg.91]

Rafiki, A., Boulland, J. L., Halestrap, A. P. et al. Highly differential expression of the monocarboxylate transporters MCT2 and MCT4 in the developing rat brain. Neuroscience 122 677-688, 2003. [Pg.553]

Bahn, S., Volk, B., and Wisden, W. (1994) Kainate receptor gene expression in the developing rat brain../. Neurosci. 14, 5525-5547. [Pg.42]

Uzodinma JE, Trottman CH, Shubert P, et al. 1984b. Sensitivity of developing rat brain ATPases to chlordecone (Kepone). J Environ Biol 5(3) 135-139. [Pg.290]

Caldeira JC, Wu Y, Mameli M, Purdy RH, Li P-K, Akwa Y, Savage DD, Engen JR, Valenzuela CF. 2004. Fetal alcohol exposure alters neurosteroid levels in the developing rat brain. J Neurochem 90 1530-1539. [Pg.190]

Pellegrini-Giampietro DE, Bennett MV, Zukin RS. 1991. Differential expression of three glutamate receptor genes in developing rat brain an in situ hybridization study. Proc Natl Acad Sci USA 88 4157-4161. [Pg.291]

Suzuki T, Ogata A, Tashiro K, Nagashima K, Tamura M, et al. 1999. A method for detection of a cytokine and its mRNA in the central nervous system of the developing rat. Brain Res Prot 4 271-279. [Pg.370]

Toth CP, Long RE, Mills TS, et al Effects of chlorine dioxide on the developing rat brain. J Toxicol Environ Health 31 29 4, 1990... [Pg.141]

Pfohl B, Taylor D. 1983. Effect of chlorine dioxide on glucose uptake by developing rat brains. Am Zool 23(4) 990. [Pg.140]

McNamara RK, Lenox RH Distribution of protein kinase C substrates MARCKS and MRP in the postnatal developing rat brain. J Comp Neurol 397 337-356, 1998 McNamara RK, Stumpo DJ, Morel LM, et al Effects of reduced myristoylated alanine rich C-kinase substrate expression on spatial learning in mutant mice transgenic rescue and interaction with gene background. Proc Natl Acad Sci U S A95 14517-14522, 1998... [Pg.695]

Using hybridization in situ with oligonucleotide probes, expression patterns of the five known kainate-type glutamate receptor subunit genes, KA1, KA2 and GluR5 to 7, have been discovered in brain tissue of adult and developing rat brain (Michaelis, 1998 Lerma et al., 2001). In situ hybridization studies also indicate that neurons showing the KA1 response are almost exclusively restricted to the CA3... [Pg.27]

Sakagami, H., Watanabe, M. and Kondo, H., 1992, Gene expression of Ca2+/calmodulin-dependent protein kinase of the cerebellar granule cell type or type TV in the mature and developing rat brain, Brain Res Mol Brain Res, 16, pp 20-8. [Pg.212]

H. Kajiyama and Y. Nomura, Alterations in dopaminergic and muscarinic cholinergic receptors after subchronic treatment with haloperidol in the developing rat brain, J. Pharm. Dyn., 4 (1981) 85-90. [Pg.309]

Berrendero, F., Sepe, N., Ramos, J. A., Di Marzo, V., and Femandez-Ruiz, J. J. (1999). Analysis of cannabinoid receptor binding and mRNA expression and endogenous cannabinoid contents in the developing rat brain during late gestation and early postnatal period. Synapse 33, 181—191. [Pg.129]

Muneoka KT, Takigawa M. 5-Hydroxytiyptamine7 (5-HT7) receptor immuno-reactivity-positive stigmoid body -like structure in developing rat brains. Int Dev Neurosci 2003 21 133-143. [Pg.316]

Leo, J. (2005). Methylphenidate-induced neuropathology in the developing rat brain Implications for humans. Ethical Human Psychology and Psychiatry, 7, 107—110. [Pg.501]

Moran-Gates, T., Grady, C., Park, Y., Baldessarim, R., Tarazi, F. (2007). Effects of risperidone on dopamine receptor subtypes in developing rat brain. European Neuropsychopharmacology, 17, 444—455. [Pg.506]

Pollard H, Khrestchatisky M, Moreau J, Ben Ari Y. 1993. Transient expression of the NR2C subunit of the NMDA receptor in developing rat brain. Neuroreport 4 411-414. [Pg.86]

Matsuoka I, Suzuki Y, Defer N, Nakanishi H, Hanoune J (1997) Differential expression of type I, II, and V adenylyl cyclase gene in the postnatal developing rat brain. J Neurochem <53 498-506. [Pg.146]

Nishiyama A, Lin XH, Giese N, Heldin CH, Stallcup WB (1996) Co-localization of NG2 proteoglycan and PDGF alpha-receptor on 02A progenitor cells in the developing rat brain. J Neurosci Res 43 299-314. [Pg.461]

Lindstrom H, Luthman J, Oskarsson A, et al. 1991. Effects of long-term treatment with methyl mercury on the developing rat brain. Environ Res 56(2) 158-169. [Pg.624]

Milligan, C. E., Cunningham, T. J., and Levitt, P., Differential immunochemical markers reveal the normal distribution of brain macrophages and microglia in the developing rat brain, J. Comp. Neurol., 314, 125, 1991. [Pg.92]

Schmidt JW, Rossie S, Catterall WA 1985 A large intracellular pool of inactive Na channel alpha subunits in developing rat brain. Proc Natl Acad Sci USA 82 4847-4851... [Pg.138]

Belluardo N, Mudd G, Trovato-Salinaro A, Le Gurun S, CharoUais A, et al. 2000. Expression of connexin36 in the adult and developing rat brain. Brain Res 865 121-138. [Pg.184]

Malioso M-L, Marqueze-Pouey B, Kuhse J, Betz H. 1991. Widespread expression of glycine receptor subunit mRNAs in the adult and developing rat brain. EMBO J 10 2401-2409. [Pg.194]

Meisami E. 1989. A proposed relationship between increases in the number of olfactory receptor neurons, convergence ratio and sensitivity in the developing rat. Brain Res Dev Brain Res 46 9-19. [Pg.195]


See other pages where Development rat brain is mentioned: [Pg.190]    [Pg.49]    [Pg.92]    [Pg.852]    [Pg.106]    [Pg.299]    [Pg.524]    [Pg.275]    [Pg.144]    [Pg.413]    [Pg.782]    [Pg.782]    [Pg.124]    [Pg.142]    [Pg.145]    [Pg.207]    [Pg.18]   
See also in sourсe #XX -- [ Pg.11 , Pg.913 ]




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