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Brain Research
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March 18, 1982
Ganglioside changes in the chicken optic lobes as biochemical indicators of brain development and maturation
H Rösner
Psychopharmacology
|
July 9, 1976
[Effect of chlorpromazine on the incorporation of sialic acid into gangliosides and glycoproteins of the chicken brain (author's transl)]
H Rösner
Annals of the New York Academy of Sciences
|
July 21, 1998
Significance of gangliosides in neuronal differentiation of neuroblastoma cells and neurite growth in tissue culture
H Rösner
Journal of Neurochemistry
|
October 1, 1981
Isolation and preliminary characterization of novel polysialogangliosides from embryonic chick brain
H Rösner
Brain Research
|
October 24, 1975
Incorporation of sialic acid into gangliosides and glycoproteins of the optic pathway following an intraocular injection of [N-3H]acetylmannosamine in the chicken
H Rösner
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie
|
July 1, 1977
[Binding of colchiceine to isolated gangliosides and ganglioside-containing membranes (author's transl)]
H Rösner, M Schönharting
European Journal of Cell Biology
|
November 24, 1999
1,2-dioctanoyl-s,n-glycerol-induced activation of protein kinase C results in striking, but reversible growth cone shape changes and an accumulation of f-actin and serine 41-phosphorylated GAP-43 in the axonal process
H Rösner, G Vacun
Brain Research
|
March 18, 1982
Uniform distribution and similar turnover rates of individual gangliosides along axons of retinal ganglion cells in the chicken
H Rösner, G Merz
International Journal of Developmental Neuroscience : the Official Journal of the International Society for Developmental Neuroscience
|
January 1, 1986
Early cytoarchitectonic development of the anlage of the basal nucleus of Meynert in the human fetus
I Kracun, H Rösner
Neuroscience Letters
|
November 29, 1996
In growth cones of rat cerebral neurons and human neuroblastoma cells, activation of protein kinase C causes a shift from filopodial to lamellipodial actin dynamics
H Rösner, H Fischer
Page
of 6
Search research articles
Search
Showing results (1-10 of 51) with videos related to
Sort By:
Page
of 6
Brain Research
|
March 18, 1982
Ganglioside changes in the chicken optic lobes as biochemical indicators of brain development and maturation
H Rösner
Psychopharmacology
|
July 9, 1976
[Effect of chlorpromazine on the incorporation of sialic acid into gangliosides and glycoproteins of the chicken brain (author's transl)]
H Rösner
Annals of the New York Academy of Sciences
|
July 21, 1998
Significance of gangliosides in neuronal differentiation of neuroblastoma cells and neurite growth in tissue culture
H Rösner
Journal of Neurochemistry
|
October 1, 1981
Isolation and preliminary characterization of novel polysialogangliosides from embryonic chick brain
H Rösner
Brain Research
|
October 24, 1975
Incorporation of sialic acid into gangliosides and glycoproteins of the optic pathway following an intraocular injection of [N-3H]acetylmannosamine in the chicken
H Rösner
Hoppe-Seyler'S Zeitschrift Fur Physiologische Chemie
|
July 1, 1977
[Binding of colchiceine to isolated gangliosides and ganglioside-containing membranes (author's transl)]
H Rösner, M Schönharting
European Journal of Cell Biology
|
November 24, 1999
1,2-dioctanoyl-s,n-glycerol-induced activation of protein kinase C results in striking, but reversible growth cone shape changes and an accumulation of f-actin and serine 41-phosphorylated GAP-43 in the axonal process
H Rösner, G Vacun
Brain Research
|
March 18, 1982
Uniform distribution and similar turnover rates of individual gangliosides along axons of retinal ganglion cells in the chicken
H Rösner, G Merz
International Journal of Developmental Neuroscience : the Official Journal of the International Society for Developmental Neuroscience
|
January 1, 1986
Early cytoarchitectonic development of the anlage of the basal nucleus of Meynert in the human fetus
I Kracun, H Rösner
Neuroscience Letters
|
November 29, 1996
In growth cones of rat cerebral neurons and human neuroblastoma cells, activation of protein kinase C causes a shift from filopodial to lamellipodial actin dynamics
H Rösner, H Fischer
Page
of 6