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Developmental Brain Research 1995: Vol 85 Index PDF

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DEVELOPMENTAL BRAIN RESEARCH LSEVIER Developmental Brain Research 85 (1995) 298-299 Author Index Ackermann, M.R., see Iqbal, J. (85) 151 Ebendal, T., see S6derstr6m, S. (85) 96 Postnatal neurogenesis of the hypothala- Ahmed, A.K.M.F., Sugioka, K., Dong, K. Edwards, Y.H., see Schofield, J.N. (85) 229 mic paraventricular and supraoptic nu- and Yamadori, T. Elmquist, J.K., see Iqbal, J. (85) 151 clei in the Brazilian opossum brain (85) A study of double-labeled retinal gan- Enokido, Y., see Kubo, T. (85) 249 151 glion cells from the superior colliculus in Isobe, Y., Nakajima, K. and Nishino, H. the developing albino rat (85) 71 Farrell, S.T., see Mickley, G.A. (85) 119 Arg-vasopressin content in the suprachi- Allred, E., see Tsuji, M. (85) 192 Feleder, C., see Arias, P. (85) 137 asmatic nucleus of rat pups: circadian Arias, P., Feleder, C., Rodriguez, M., Fredriksson, A., see Sdderstrém, S. (85) 96 rhythm and its development (85) 58 Ginzburg, M., Refojo, D., Szwarcfarb, B. Fujisawa, H., see Hirata, T. (85) 201 and Moguilevsky, J.A. Jacobson, C.D., see Iqbal, J. (85) 151 Repeated intracerebroventricular admin- Gallo, G. and Pollack, E.D. Jaynes, D., see Sheedlo, H.J. (85) 171 istration of taurine lowers LH levels and Cyclic remodelling of growth cone lamel- Jensen, F., see Tsuji, M. (85) 192 postpones vaginal opening in peripuber- lae and the effect of target tissue (85) 140 Jia, W.W.-G., Liu, Y. and Cynader, M. tal female rats (85) 137 Gebhard, D., see Rozental, R. (85) 161 Postnatal development of inositol 1,4,5- Ginzburg, M., see Arias, P. (85) 137 trisphosphate receptors: a disparity with Barker, J.L., see Valeyev, A.Y. (85) 280 Gordon, I., Weizman, R., Rosenne, E. and protein kinase C (85) 109 Binns, K.E., Withington, D.J. and Keating, Rehavi, M. Jiang, Z.-G., Smith, R.A. and Neilson, M.J. Developmental and age-related alter- M.M.A. The developmental emergence of the ations in rat brain presynaptic dopamin- The effects of nerve growth factor on representation of auditory azimuth in the ergic mechanisms (85) 225 neurite outgrowth from cultured adult external nucleus of the inferior colliculus Goto, M., see Yoshida, Y. (85) 25 and aged mouse sensory neurons (85) 212 of the guinea-pig: the effects of visual Greensmith, L., see Kerai, B. (85) 89 Jongenelen, C.A.M., see Van Muiswinkel, and auditory deprivation (85) 14 Grumet, M., see Sakurai, T. (85) 301 F.L. (85) 128 Bohn, M.C., see Choi-Lundberg, D.L. (85) 80 Hatanaka, H., see Kubo, T. (85) 249 Bolan, A.L., see Sheedlo, H.J. (85) 171 Heaton, M.B., Paiva, M., Swanson, D.J. and Kasugai, T., see Hirata, T. (85) 201 Brand, T., see Swaab, D.F. (85) 273 Walker, D.W. Keating, M.J., see Binns, K.E. (85) 14 Brees, D.K., see Kelly, M.M. (85) 31 Alterations in responsiveness to ethanol Kelly, M.M., Phanhthourath, C., Brees, D.K., Brunjes, P.C., see Paternostro, M.A. (85) 303 and neurotrophic substances in fetal sep- McCabe, C.F. and Cole, G.J. Brunso-Bechtold, J.K., see Niblock, M.M. tohippocampal neurons following chronic Molecular characterization of EAP-300: (85) 288 prenatal ethanol exposure (85) 1 a high molecular weight, embryonic Burek, M.J., Nordeen, K.W. and Nordeen, Henkel, C.K., see Niblock, M.M. (85) 288 polypeptide containing an amino acid re- E.J. Hirata, T., Kasugai, T., Morii, E., Hirota, S., peat comprised of multiple leucine-zipper Estrogen promotes neuron addition to an Nomura, S., Fujisawa, H. and Kitamura, motifs (85) 31 avian song-control nucleus by regulating bf Kerai, B., Greensmith, L., Vrbova, G. and post-mitotic events (85) 220 Characterization of c-kit-positive neurons Navarrete, R. in the dorsal root ganglion of mouse (85) Effect of transient neonatal muscle Chang, K.S., see Mickley, G.A. (85) 119 201 paralysis on the growth of soleus mo- Chiu, F.-C., see Rozental, R. (85) 161 Hirota, S., see Hirata, T. (85) 201 toneurones in the rat (85) 89 Choi-Lundberg, D.L. and Bohn, M.C. Hoffman, S.N. and Prince, D.A. Kimm, E.J., Perez, C.E., Yu, C.C., Yu, J. Ontogeny and distribution of glial cell Epileptogenesis in immature neocortical and Robertson, R.T. line-derived neurotrophic factor (GDNF) slices induced by 4-aminopyridine (85) 64 Reduction of transiently expressed mRNA in rat (85) 80 Holtzman, D., see Tsuji, M. (85) 192 acetylcholinesterase activity in develop- Cole, G.J., see Kelly, M.M. (85) 31 Houtsmuller, E.J., see Swaab, D.F. (85) 273 ing thalamocortical projections does not Cynader, M., see Jia, W.W.-G. (85) 109 Hovda, D.A., see Loopuijt, L.D. (85) 259 affect the mature pattern of basal fore- Hunter, S.E., Seibenhener, M.L. and brain projections to visual cortex (85) 283 Day, I.N.M., see Schofield, J.N. (85) 229 Wooten, M.W. Kitamura, Y., see Hirata, T. (85) 201 Dencker, L., see S6derstrém, S. (85) 96 Atypical {-protein kinase c displays a Kubo, T., Nonomura, T., Enokido, Y. and Dong, K., see Ahmed, A.K.M.F. (85) 71 unique developmental expression pattern Hatanaka, H. Drukarch, B., see Van Muiswinkel, F.L. (85) in rat brain (85) 239 Brain-derived neurotrophic factor 128 (BDNF) can prevent apoptosis of rat Dunaway, G.A., see Mhaskar, Y. (85) 54 Iqbal, J., Elmquist, J.K., Ross, L.R., Acker- cerebellar granule neurons in culture (85) Dunlap, V.S., see Valeyev, A.Y. (85) 280 mann, M.R. and Jacobson, C.D. 249 Author Index 299 Leon, M., see Rangel, S. (85) 187 Refojo, D., see Arias, P. (85) 137 Stoof, J.C., see Van Muiswinkel, F.L. (85) Liu, Y., see Jia, W.W.-G. (85) 109 Rehavi, M., see Gordon, I. (85) 225 128 Loopuijt, L.D., Villablanca, J.R. and Hovda, Reppert, S.M., see Weaver, D.R. (85) 293 Sugioka, K., see Ahmed, A.K.M.F. (85) 71 D.A. Reyher, C.K.H., see Paternostro, M.A. (85) Swaab, D.F., Slob, A.K., Houtsmuller, E.J., Morphological changes in the thalamus 303 Brand, T. and Zhou, J.N. and neocortex of the cat brain after a Robertson, R.T., see Kimm, E.J. (85) 283 Increased number of vasopressin neurons restricted unilateral fetal neocortical le- Roca, A.L., see Weaver, D.R. (85) 293 in the suprachiasmatic nucleus (SCN) of sion (85) 259 Rodnight, R., see Wofchuk, S.T. (85) 181 ‘bisexual’ adult male rats following peri- Lovelace, J.D., see Mickley, G.A. (85) 119 Rodriguez, M., see Arias, P. (85) 137 natal treatment with the aromatase Rosenne, E., see Gordon, I. (85) 225 blocker ATD (85) 273 McCabe, C.F., see Kelly, M.M. (85) 31 Ross, L.R., see Iqbal, J. (85) 151 Swanson, D.J., see Heaton, M.B. (85) 1 McCook, E.C., see Seidler, F.J. (85) 48 Rozental, R., Gebhard, D., Padin, C., Ur- Szwarcfarb, B., see Arias, P. (85) 137 Mhaskar, Y. and Dunaway, G.A. ban, M., Wu, J.Y., Spray, D.C. and Chiu, Alteration of PFK subunit protein, syn- F.-C. Tanaka, H., see Sakurai, T. (85) 301 thesis, and mRNA during neonatal brain Purification of cell populations from hu- Temple, S.W., see Seidler, F.J. (85) 48 development (85) 54 man fetal brain using flow cytometric Thompson, R.J., see Schofield, J.N. (85) 229 Mickley, G.A., Lovelace, J.D., Farrell, S.T. techniques (85) 161 Tsuji, M., Allred, E., Jensen, F. and Holtz- and Chang, K.S. man, D. The intensity of a fetal taste aversion is Phosphocreatine and ATP regulation in modulated by the anesthesia used during the hypoxic developing rat brain (85) 192 conditioning (85) 119 Sakurai, T., Shiga, T., Shirai, T., Tanaka, H. Tsutsui, J.-i., see Yoshida, Y. (85) 25 Moguilevsky, J.A., see Arias, P. (85) 137 and Grumet, M. Turner, J.E., see Sheedlo, H.J. (85) 171 Morii, E., see Hirata, T. (85) 201 Biochemical characterization and im- Muramatsu, T., see Yoshida, Y. (85) 25 munolocalization of SC2 protein: SC2 Urban, M., see Rozental, R. (85) 161 Murphey, L.J. and Olsen, G.D. protein is indistinguishable from the cell Valeyev, A.Y., Dunlap, V.S. and Barker, J.L. Developmental change of mu opioid re- adhesion molecule axonin-1 (Dev. Brain Pharmacological properties of fetal rat ceptors in neonatal guinea pig brain stem Res. 83 (1994) 99-108) (BRESD 51905) hippocampal GABA , receptors (85) 280 (85) 146 (85) 301 Van Muiswinkel, F.L., Jongenelen, C.A.M., Sato, E., see Yoshida, Y. (85) 25 Schepens, H.T.W.J., Stoof, J.C. and Nakajima, K., see Isobe, Y. (85) 58 Schepens, H.T.W.J., see Van Muiswinkel, Drukarch, B. Navarrete, R., see Kerai, B. (85) 89 F.L. (85) 128 Effects of chronic activation of dopamine Neilson, M.M.A., see Jiang, Z.-G. (85) 212 Schofield, J.N., Day, I.N.M., Thompson, R.J. D-2 receptors in cultures of rat fetal Niblock, M.M., Brunso-Bechtold, J.K. and and Edwards, Y.H. dopaminergic neurons: indications for al- Henkel, C.K. PGP9.5, a ubiquitin C-terminal hydro- terations in functional activity (85) 128 Fiber outgrowth and pathfinding in the lase; pattern of mRNA and protein ex- Villablanca, J.R., see Loopuijt, L.D. (85) 259 developing auditory brainstem (85) 288 pression during neural development in Vrbova, G., see Kerai, B. (85) 89 Nishino, H., see Isobe, Y. (85) 58 the mouse (85) 229 Nomura, S., see Hirata, T. (85) 201 Seibenhener, M.L., see Hunter, S.E. (85) 239 Walker, D.W., see Heaton, M.B. (85) 1 Nonomura, T., see Kubo, T. (85) 249 Seidler, F.J., Temple, $.W., McCook, E.C. Weaver, D.R., Roca, A.L. and Reppert, S.M. Nordeen, E.J., see Burek, M.J. (85) 220 and Slotkin, T.A. c-fos and jun-B mRNAs are transiently Nordeen, K.W., see Burek, M.J. (85) 220 Cocaine inhibits central noradrenergic expressed in fetal rodent suprachiasmatic and dopaminergic activity during the crit- nucleus following dopaminergic stimula- Olsen, G.D., see Murphey, L.J. (85) 146 ical developmental period in which cate- tion (85) 293 Osame, M., see Yoshida, Y. (85) 25 cholamines influence cell development Weizman, R., see Gordon, I. (85) 225 Ozawa, M., see Yoshida, Y. (85) 25 (85) 48 Withington, D.J., see Binns, K.E. (85) 14 Sheedlo, H.J., Jaynes, D., Bolan, A.L. and Wofchuk, S.T. and Rodnight, R. Padin, C., see Rozental, R. (85) 161 Turner, J.E. Age-dependent changes in the regulation Paiva, M., see Heaton, M.B. (85) 1 Mullerian glia in dystrophic rodent reti- by external calcium ions of the phospho- Paternostro, M.A., Reyher, C.K.H. and nas: an immunocytochemical analysis (85) rylation of glial fibrillary acidic protein in Brunjes, P.C. 171 slices of rat hippocampus (85) 181 Intracellular injections of Lucifer Yellow Shiga, T., see Sakurai, T. (85) 301 Wooten, M.W., see Hunter, S.E. (85) 239 into lightly fixed mitral cells reveal neu- Shirai, T., see Sakurai, T. (85) 301 Wu, J.Y., see Rozental, R. (85) 161 ronal dye-coupling in the developing rat Slob, A.K., see Swaab, D.F. (85) 273 olfactory bulb (Dev. Brain Res. 84 (1995) Slotkin, T.A., see Seidler, F.J. (85) 48 Yamadori, T., see Ahmed, A.K.M.F. (85) 71 1-10) (BRESD 51916) (85) 303 Smith, R.A., see Jiang, Z.-G. (85) 212 Yoshida, Y., Goto, M., Tsutsui, J.-i., Ozawa, Perez, C.E., see Kimm, E.J. (85) 283 Séderstrém, S., Fredriksson, A., Dencker, L. M., Sato, E., Osame, M. and Muramatsu, Phanhthourath, C., see Kelly, M.M. (85) 31 and Ebendal, T. : Pollack, E.D., see Gallo, G. (85) 140 The effect of mercury vapour on cholin- Midkine is present in the early stage of Prince, D.A., see Hoffman, S.N. (85) 64 ergic neurons in the fetal brain: studies cerebral infarct (85) 25 on the expression of nerve growth factor Yu, C.C., see Kimm, E.J. (85) 283 Rangel, S. and Leon, M. and its low- and high-affinity receptors Yu, J., see Kimm, E.J. (85) 283 Early odor preference training increases (85) 96 olfactory bulb norepinephrine (85) 187 Spray, D.C., see Rozental, R. (85) 161 Zhou, J.N., see Swaab, D.F. (85) 273 (contents continued) Author Index Errata Biochemical characterization and immunolocalization of SC2 protein: SC2 protein is indistinguishable from the cell adhesion molecule axonin-1 (Dev. Brain Res. 83 (1994) 99-108) (BRESD 51905) T. Sakurai, T. Shiga, T. Shirai, H. Tanaka and M. Grumet 301 Intracellular injections of Lucifer Yellow into lightly fixed mitral cells reveal neuronal dye-coupling in the developing rat olfactory bulb (Dev. Brain Res. 84 (1995) 1-10) (BRESD 51916) M.A. Paternostro, C.K.H. Reyher and P.C. Brunjes

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