All Relations between neuroglial cell and spinal cord

Publication Sentence Publish Date Extraction Date Species
H Kamada, Y Kawai, S Sato, H Fujiwara, S Ara, T Ogasawara, T Hotta, J Nakamura, T Saruta, K Suemats. [The immunohistological study of developing human spinal cord--the localization of vimentine, GFAP in radial glial cell]. No to shinkei = Brain and nerve. vol 36. issue 3. 1984-08-27. PMID:6743394. [the immunohistological study of developing human spinal cord--the localization of vimentine, gfap in radial glial cell]. 1984-08-27 2023-08-12 mouse
M M Bullon, T Alvarez-Gago, B Fernandez-Ruiz, C Aguirr. Glial fibrillary acidic protein (GFAP) in spinal cord of postnatal rat. An immunoperoxidase study in semithin sections. Brain research. vol 316. issue 1. 1984-08-23. PMID:6375815. the glia limitans membrane is continuous from the 5th day onwards and in 17-day-old animals the astrocytic framework of the spinal cord has reached its adult appearance. 1984-08-23 2023-08-12 rat
R H Brown, J Schweitzer, M A Dichte. Expression of the Thy-1 antigen in long-term cultures of embryonic mouse spinal cord. Brain research. vol 296. issue 1. 1984-06-07. PMID:6143594. immunofluorescent studies of the thy-1 antigen in cultures of mouse spinal cord demonstrated positivity on the surfaces of a fraction of neurons and glia. 1984-06-07 2023-08-12 mouse
D L Meinecke, H D Webste. Fine structure of dividing astroglia and oligodendroglia during myelin formation in the developing mouse spinal cord. The Journal of comparative neurology. vol 222. issue 1. 1984-04-17. PMID:6699202. in semithin epon sections stained with toluidine blue, all levels of spinal cord at both ages contained mitotic glia in gray columns and funiculi. 1984-04-17 2023-08-12 mouse
I D Duncan, I R Griffiths, M Mun. 'Shaking pups': a disorder of central myelination in the spaniel dog. III. Quantitative aspects of glia and myelin in the spinal cord and optic nerve. Neuropathology and applied neurobiology. vol 9. issue 5. 1984-01-07. PMID:6646343. quantitative aspects of glia and myelin in the spinal cord and optic nerve. 1984-01-07 2023-08-12 dog
T J Sims, S A Gilmor. Interactions between intraspinal Schwann cells and the cellular constituents normally occurring in the spinal cord: an ultrastructural study in the irradiated rat. Brain research. vol 276. issue 1. 1983-12-20. PMID:6626996. at 45 and 60 days p-i, the basal lamina no longer forms a singular, continuous covering over the spinal cord surface, but follows instead a rather tortuous course over the disrupted glia limitans and the intraspinal schwann cells. 1983-12-20 2023-08-12 rat
C P Bührle, U Sonnho. Intracellular ion activities and equilibrium potentials in motoneurones and glia cells of the frog spinal cord. Pflugers Archiv : European journal of physiology. vol 396. issue 2. 1983-05-27. PMID:6601260. intracellular ion activities and equilibrium potentials in motoneurones and glia cells of the frog spinal cord. 1983-05-27 2023-08-12 Not clear
C P Bührle, U Sonnho. Intracellular ion activities and equilibrium potentials in motoneurones and glia cells of the frog spinal cord. Pflugers Archiv : European journal of physiology. vol 396. issue 2. 1983-05-27. PMID:6601260. intra-and extracellular ion activities were measured with ion sensitive microelectrodes in motoneurones and glia cells of the spinal cord of the frog. 1983-05-27 2023-08-12 Not clear
N Okad. Early myelin formation and glial cell development in the human spinal cord. The Anatomical record. vol 202. issue 4. 1982-06-21. PMID:7072990. early myelin formation and glial cell development in the human spinal cord. 1982-06-21 2023-08-12 human
U Sonnhof, R Förderer, W Schneider, H Kettenman. Cell puncturing with a step motor driven manipulator with simultaneous measurement of displacement. Pflugers Archiv : European journal of physiology. vol 392. issue 3. 1982-06-14. PMID:7041079. during simultaneous measurements of step performance motoneurons in the frog spinal cord, ca 1 cells of hippocampal brain slices and glia cells in tissue culture were punctured with single electrodes (tip less than l micron and double barrelled ion-sensitive microelectrodes (phi 1,5-2 micron). 1982-06-14 2023-08-12 Not clear
N V Smirnov. [Organization of the life-ensuring systems of spinal cord nerve cells in dogs]. Arkhiv anatomii, gistologii i embriologii. vol 82. issue 1. 1982-05-21. PMID:7065907. by means of klosovsky's impregnation method and injecting the vascular network with gelatin--indian ink solution with a subsequent additional staining of the cells after nissl's method, interposition of neural cells of ix and vi laminae with the vessels and glia has been studied in the dog spinal cord at the level of l6. 1982-05-21 2023-08-12 dog
A J Aguayo, S David, G M Bra. Influences of the glial environment on the elongation of axons after injury: transplantation studies in adult rodents. The Journal of experimental biology. vol 95. 1982-05-21. PMID:7334319. following spinal cord injury and also after transplantation of optic nerves into the pns there is axonal sprouting but these neuronal processes fail to elongate more than a few mm into the surrounding glia. 1982-05-21 2023-08-12 mouse
K R Kazacos, H L Thacker, H L Shivaprasad, P P Burge. Vaccination-induced distemper in kinkajous. Journal of the American Veterinary Medical Association. vol 179. issue 11. 1982-04-12. PMID:7199035. eosinophilic intranuclear inclusions were seen histologically in the glia in the spinal cord, midbrain, and cerebellum, and were confirmed as canine distemper viral inclusions by the fluorescent antibody method. 1982-04-12 2023-08-12 Not clear
E N Kosmarskaia, N V Smirnov. [Changes in the structure of lamina IX of the lumbar enlargement of the spinal cord in dogs following limb amputation]. Arkhiv anatomii, gistologii i embriologii. vol 81. issue 9. 1982-02-22. PMID:7316802. neural cells, glia and capillary network in ix plate of l6 of the spinal cord were studied in 15 mature dogs (control) and in 15 dogs survived for 6 months after amputation of the right femur at the level of middle third. 1982-02-22 2023-08-12 Not clear
I W Chu-Wang, R W Oppenheim, P B Fare. Ultrastructure of migrating spinal motoneurons in anuran larvae. Brain research. vol 213. issue 2. 1981-09-15. PMID:6972797. radial glia, whose cell bodies are located in the ependyma, have processes extending to the spinal cord periphery. 1981-09-15 2023-08-12 Not clear
B H Cho. Radial glia of developing human fetal spinal cord: Golgi, immunohistochemical and electron microscopic study. Brain research. vol 227. issue 2. 1981-07-23. PMID:7013909. radial glia of developing human fetal spinal cord: golgi, immunohistochemical and electron microscopic study. 1981-07-23 2023-08-12 human
B H Cho. Radial glia of developing human fetal spinal cord: Golgi, immunohistochemical and electron microscopic study. Brain research. vol 227. issue 2. 1981-07-23. PMID:7013909. radial glia of the developing spinal cord were examined by golgi, electron microscopic and immunohistochemical methods in 40 human embryos and fetuses of ovulation age 6-20 weeks. 1981-07-23 2023-08-12 human
D K Riker, R H Roth, X O Breakefiel. High-affinity [3H]choline accumulation in cultured human skin fibroblasts. Journal of neurochemistry. vol 36. issue 2. 1981-04-13. PMID:6257859. in cell culture, haca has been demonstrated in glia and avian telencephalon, dissociated spinal cord, and muscle fibroblasts. 1981-04-13 2023-08-12 human
M Armstrong-James, W R Ewar. Slow waves and unitary activity evoked by cutaneous stimulation from the rat cuneate nucleus. Experimental brain research. vol 39. issue 3. 1980-10-21. PMID:6249631. a similar component to n3 has been described by previous workers in the spinal cord, where it has been shown to arise from glia depolarised by k+ effluxing from discharging afferents and cells. 1980-10-21 2023-08-12 rat
L Z Pevzner, V A Klenikov. Procedure of RNA extraction which does not extract DNA and proteins from nervous tissue cells. Microscopica acta. vol 82. issue 3. 1980-04-25. PMID:231183. in mice, after 3 h-swimming, and in cats, after 2-week daily injections of adrenaline, a number of quantitative and qualitative rna changes were found out in nerve and glial cell of mouse spinal cord and cat sympathetic ganglion with the aid of the recommended scheme of rna extraction. 1980-04-25 2023-08-11 mouse