Heterogeneity in the distribution and morphology of microglia in the normal adult mouse brain
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[1] V. Perry,et al. Microglia in the neurohypophysis associate with and endocytose terminal portions of neurosecretory neurons , 1989, Neuroscience.
[2] M. Esiri,et al. Macrophages, lymphocytes and major histocompatibility complex (HLA) class II antigens in adult human sensory and sympathetic ganglia , 1989, Journal of Neuroimmunology.
[3] J. Blalock,et al. Opioid receptors on cells of the immune system: evidence for δ- and κ-classes , 1989 .
[4] H. Petty,et al. Combinative ligand‐receptor interactions: Effects of CAMP, epinephrine, and met‐enkephalin on RAW264 macrophage morphology, spreading, adherence, and microfilaments , 1989, Journal of cellular physiology.
[5] V. Perry,et al. Macrophages and microglia in the nervous system , 1988, Trends in Neurosciences.
[6] Kathryn W. Tosney,et al. Cell death delineates axon pathways in the hindlimb and does so independently of neurite outgrowth. , 1988, Developmental biology.
[7] J. Krebs,et al. Interleukin-1 injected into mammalian brain stimulates astrogliosis and neovascularization , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[8] Thomas We,et al. Brain macrophages: questions of origin and interrelationship. , 1988 .
[9] D. Giulian,et al. Interleukin-1 is an astroglial growth factor in the developing brain , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[10] W. Hickey,et al. Perivascular microglial cells of the CNS are bone marrow-derived and present antigen in vivo. , 1988, Science.
[11] V. Perry,et al. Plasma membrane receptors of the mononuclear phagocyte system , 1988, Journal of Cell Science.
[12] S. Gordon,et al. Novel cell surface adhesion receptors involved in interactions between stromal macrophages and haematopoietic cells , 1988, Journal of Cell Science.
[13] M. Cuzner,et al. Microglia are the major cell type expressing MHC class II in human white matter , 1987, Journal of the Neurological Sciences.
[14] S. Nagao,et al. Sex differences in the densities of epidermal Langerhans cells of the mouse. , 1987, The Journal of investigative dermatology.
[15] S. Gordon,et al. Properties and distribution of a lectin-like hemagglutinin differentially expressed by murine stromal tissue macrophages , 1986, The Journal of experimental medicine.
[16] R. Skoff,et al. Oligodendroglial cell death in jimpy mice: an explanation for the myelin deficit , 1986, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[17] E. Sternberg,et al. Effect of serotonin on murine macrophages: suppression of Ia expression by serotonin and its reversal by 5-HT2 serotonergic receptor antagonists. , 1986, Journal of immunology.
[18] H. Hartung,et al. Substance P: binding properties and studies on cellular responses in guinea pig macrophages. , 1986, Journal of immunology.
[19] R. Allen,et al. Brain peptides and glial growth. I. Glia-promoting factors as regulators of gliogenesis in the developing and injured central nervous system , 1986, The Journal of cell biology.
[20] S. Gordon,et al. Biology of the Macrophage , 1986, Journal of Cell Science.
[21] R. Lent,et al. Transient populations of presumptive macrophages in the brain of the developing hamster, as indicated by endocytosis of blood-borne horseradish peroxidase , 1985, Neuroscience.
[22] V. Perry,et al. Immunohistochemical localization of macrophages and microglia in the adult and developing mouse brain , 1985, Neuroscience.
[23] S. Lee,et al. Quantitative analysis of total macrophage content in adult mouse tissues. Immunochemical studies with monoclonal antibody F4/80 , 1985, The Journal of experimental medicine.
[24] N. Delhaye-bouchaud,et al. Neuronal death and synapse elimination in the olivocerebellar system. I. Cell counts in the inferior olive of developing rats , 1985, The Journal of comparative neurology.
[25] H. Killackey. Glia and the elimination of transient cortical projections , 1984, Trends in Neurosciences.
[26] G. Innocenti,et al. Transitory macrophages in the white matter of the developing visual cortex. I. Light and electron microscopic characteristics and distribution. , 1983, Brain research.
[27] R. Linden,et al. Postnatal changes in retinal ganglion cell and optic axon populations in the pigmented rat , 1983, The Journal of comparative neurology.
[28] V. Perry,et al. Immunohistochemical localization of a macrophage-specific antigen in developing mouse retina: phagocytosis of dying neurons and differentiation of microglial cells to form a regular array in the plexiform layers , 1983, The Journal of cell biology.
[29] B L Finlay,et al. Local differences in the amount of early cell death in neocortex predict adult local specializations. , 1983, Science.
[30] B. Finlay,et al. Cell death in the mammalian visual system during normal development: II. Superior colliculus , 1982, The Journal of comparative neurology.
[31] G. Leuba,et al. NEURONAL DEATH IN THE DEVELOPMENT AND AGING OF THE CEREBRAL CORTEX OF THE MOUSE , 1981, Neuropathology and applied neurobiology.
[32] G M Innocenti,et al. Growth and reshaping of axons in the establishment of visual callosal connections. , 1981, Science.
[33] R. Sturrock. A QUANTITATIVE LIFESPAN STUDY OF CHANGES IN CELL NUMBER, CELL DIVISION AND CELL DEATH IN VARIOUS REGIONS OF THE MOUSE FOREBRAIN , 1979, Neuropathology and applied neurobiology.
[34] J. Unkeless. Characterization of a monoclonal antibody directed against mouse macrophage and lymphocyte Fc receptors , 1979, The Journal of experimental medicine.
[35] G. Galfré,et al. Mac‐1: a macrophage differentiation antigen identified by monoclonal antibody , 1979, European journal of immunology.
[36] Ling Ea. Light and electron microscopic demonstration of some lysosomal enzymes in the amoeboid microglia in neonatal rat brain. , 1977 .
[37] Giorgio M. Innocenti,et al. Exuberant projection into the corpus callosum from the visual cortex of newborn cats , 1977, Neuroscience Letters.
[38] Ling Ea. Some aspects of amoeboid microglia in the corpus callosum and neighbouring regions of neonatal rats. , 1976 .
[39] I. W. Mclean,et al. PERIODATE-LYSINE-PARAFORMALDEHYDE FIXATIVE A NEW FIXATIVE FOR IMMUNOELECTRON MICROSCOPY , 1974, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[40] W. Penfield. Cytology & cellular pathology of the nervous system , 1965 .
[41] R. Sidman,et al. ORIGIN OF BRAIN MACROPHAGES IN THE MOUSE , 1963, Journal of neuropathology and experimental neurology.
[42] M. Abercrombie. Estimation of nuclear population from microtome sections , 1946, The Anatomical record.
[43] M. Graeber,et al. Functional plasticity of microglia: A review , 1988, Glia.
[44] G. Paxinos,et al. The Rat Brain in Stereotaxic Coordinates , 1983 .
[45] E. Ling. The Origin and Nature of Microglia , 1981 .
[46] S. Gordon,et al. F4/80, a monoclonal antibody directed specifically against the mouse macrophage , 1981, European journal of immunology.
[47] I. Fabian,et al. Monoamine oxidase activity of macrophages at rest and during phagocytosis. , 1978, Biochemical pharmacology.
[48] R. Sidman,et al. Atlas of the Mouse Brain and Spinal Cord , 1971 .
[49] J. Innes,et al. Craigie's Neuroanatomy of the rat. , 1963 .