Martin-Lopez E, Meller S, Greer C
Brain Struct Funct. 2018; 223(9):4067-4085.
PMID: 30141078
PMC: 6252112.
DOI: 10.1007/s00429-018-1741-y.
Li Y, Bondada V, Joshi A, Geddes J
Exp Neurol. 2009; 220(2):316-9.
PMID: 19751724
PMC: 2796375.
DOI: 10.1016/j.expneurol.2009.09.004.
Sturrock R, Smart I
J Anat. 1980; 130(Pt 2):391-415.
PMID: 7400043
PMC: 1233141.
Sturrock R
J Anat. 1981; 132(Pt 1):119-36.
PMID: 7275786
PMC: 1233400.
Sturrock R
J Anat. 1982; 134(Pt 4):771-93.
PMID: 7130040
PMC: 1167870.
Immuno-electron-microscopic identification of O-antigen-bearing oligodendroglial cells in vitro.
Berg G, Schachner M
Cell Tissue Res. 1981; 219(2):313-25.
PMID: 7023686
DOI: 10.1007/BF00210151.
Identification of mitotic cells in the central nervous system by electron microscopy of re-embedded semithin sections.
Sturrock R
J Anat. 1984; 138 ( Pt 4):657-73.
PMID: 6746404
PMC: 1164351.
Identification of mitotic oligodendrocytes in semithin sections of the developing mouse corpus callosum and hippocampal commissure.
Sturrock R
J Anat. 1983; 137 (Pt 1):47-55.
PMID: 6630035
PMC: 1171791.
Multiplication and differentiation of glial cells in the optic nerve of the postnatal rat. A reassessment.
Valat J, Privat A, Fulcrand J
Anat Embryol (Berl). 1983; 167(3):335-46.
PMID: 6625190
DOI: 10.1007/BF00315671.
On the development of the pyramidal tract in the rat. I. The morphology of the growth zone.
de Kort E, Gribnau A, van Aanholt H, NIEUWENHUYS R
Anat Embryol (Berl). 1985; 172(2):195-204.
PMID: 4051195
DOI: 10.1007/BF00319602.
Brain peptides and glial growth. I. Glia-promoting factors as regulators of gliogenesis in the developing and injured central nervous system.
Giulian D, Allen R, Baker T, Tomozawa Y
J Cell Biol. 1986; 102(3):803-11.
PMID: 3949880
PMC: 2114119.
DOI: 10.1083/jcb.102.3.803.
Ultrastructural evidence for the mitotic division of neurons in the anterior horn of the fetal rabbit in the later stages of gestation.
Sturrock R
J Anat. 1987; 155:63-75.
PMID: 3503053
PMC: 1261875.
An ultrastructural study of the development of oligodendrocytes in the midbrain of the lizard.
Monzon-Mayor M, Yanes C, James J, Sturrock R
J Anat. 1990; 170:43-9.
PMID: 2254169
PMC: 1257061.
An ultrastructural study of the development of astrocytes in the midbrain of the lizard.
Monzon-Mayor M, Yanes C, James J, Sturrock R
J Anat. 1990; 170:33-41.
PMID: 2254168
PMC: 1257060.
Quantitative changes in neuroglia in the white matter of the mouse brain following hypoxic stress.
Sturrock R
J Anat. 1976; 121(Pt 1):7-13.
PMID: 1254533
PMC: 1231815.
A light and electron microscopic study of proliferation and maturation of fibrous astrocytes in the optic nerve of the human embryo.
Sturrock R
J Anat. 1975; 119(Pt 2):223-34.
PMID: 1133095
PMC: 1231589.
A quantitative electron microscopic study of myelination in the anterior limb of the anterior commissure of the mouse brain.
Sturrock R
J Anat. 1975; 119(Pt 1):67-75.
PMID: 1133090
PMC: 1231616.
William Ford Robertson (1867-1923): his study of neuroglia.
Sturrock R
Med Hist. 1975; 19(4):370-5.
PMID: 1102820
PMC: 1081664.
DOI: 10.1017/s0025727300020482.
Changes in the total number of neuroglia, mitotic cells and necrotic cells in the anterior limb of the mouse anterior commissure following hypoxic stress.
Sturrock R
J Anat. 1976; 122(Pt 2):447-53.
PMID: 1002613
PMC: 1231914.
Light microscopic identification of immature glial cells in semithin sections of the developing mouse corpus callosum.
Sturrock R
J Anat. 1976; 122(Pt 3):521-37.
PMID: 795801
PMC: 1231851.