AshfordC.A.DixonK.C. (1935) The effect of potassium on the glycolysis of brain tissue with reference to the Pasteur effect. Biochem J29:157–168
2.
AstrupJ.SymonL.BranstonN.M.LassenN.A. (1977) Cortical evoked potential and extracellular K+ and H+ at critical levels of brain ischemia. Stroke8:51–57
3.
AstrupJ.RehncronaS.SiesjöoB. (1980) The increase in extracellular potassium concentration in the ischemic brain in relation to the preischemic functional activity and cerebral metabolic rate. Brain Res199:161–174
4.
BabiakT.PetitoC.K. (1980) Increased mitochondrial area in astrocytes following cerebral ischemia. J Neuropathol Exp Neurol39:339
5.
BignamiA.PalladiniG. (1966) Experimentally produced cerebral status spongiosus and continuous pseudorhythmic electroencephalographic discharges with a membrane-ATPase inhibitor in the rat. Nature209:413–414
6.
BourkeR.S. (1969) Studies of the development and subsequent reduction of swelling of mammalian cerebral cortex under isosmotic condition. in vitro. Exp Brain Res8:232–248
7.
BourkeR.S.NelsonK.M. (1972) Further studies on the K+-dependent swelling of primate cerebral cortex in vivo: The enzymatic basis of the K+-dependent transport of chloride. J Neurochem19:663–685
8.
BourkeR.S.TowerD.B. (1966) Fluid compartmentation and electrolytes of cat cerebral cortex in vitro. I. Swelling and solute distribution in mature cerebral cortex. J. Neurochem13:1071–1097
9.
BourkeR.S.KimelbergH.K.NelsonL.R. (1976) The effects of temperature and inhibitors of HCO-3 stimulated swelling and ion uptake of monkey cerebral cortex. Brain Res105:309–323
10.
BourkeR.S.DazeM.A.KimelbergH.K. (1978) Chloride transport in mammalian astroglia. In: Dynamic Properties of Glia Cells, (SchoffenielsE.FranckG.HertzL.TowerD.B., eds), Oxford, Pergamon Press, pp 337–346
11.
BoyleP.J.ConwayE.J. (1941) Potassium accumulation in muscle and associated changes. J Physiol (London)100:1–63
12.
CabantchikZ.RothsteinA. (1972) Nature of membrane sites controlling anion permeability of human red blood cells as determined by studies with disulfonic stilbene derivatives. J Membr Biol10:311–330
13.
ChiangJ.KowadaM.AmesA.IIIWrightR.L.MajnoG. (1968) Cerebral ischemia III. Vascular changes. Am J Pathol52:455–476
14.
Ciesielski-TreskaJ.Roth-SchechterB.BeyaD.MandelP.NissenC.HertzL. (1976) Rate of oxygen uptake by the NN cell line of hamster astroglia: Lack of effect by excess potassium. J Neurochem26:197–199
15.
CooperA.J.L.McDonaldJ.M.GelbardA.S.GledhillR.F.DuffyT.E. (1979) The metabolic fate of 13N-labeled ammonia in rat brain. J Biol Chem254:4982–4992
16.
CornogJ.L.JrGonatasN.K.FeiermanJ.R. (1967) Effects of intracerebral injection of ouabain on the fine structure of rat cerebral cortex. Am J Pathol51:573–590
CumminsC.J.LustW.D.PassonneauJ.V. (1980) Biochemical genetics of glycogen metabolism in cultured glial cell lines. Abstr Soc Neurosci6:548
19.
DickensF.GrevilleG.D. (1935) The metabolism of normal and tumour tissue (XIII). Neutral salt effects. Biochem J29:1468–1483
20.
FunderJ.WiethJ.O. (1976) Chloride transport in human erythrocytes and ghosts: A quantitative comparison. J Physiol (London)262:679–698
21.
GerschenfeldH.M.WaldF.ZadunaiskyJ.A.DeRobertisE.D.P. (1959) Function of astroglia in the water-ion metabolism of the central nervous system. Neurology9:412–425
22.
GiacobiniE. (1962) A cytochemical study of the localization of carbonic anhydrase in the nervous system. J Neurochem9:169–177
23.
GillT.H.YoungO.M.M.TowerD.B. (1974) The uptake of 36Cl into astrocytes in tissue culture by a potassium-dependent, saturable process. J Neurochem23:1011–1018
24.
GrisarT. (1979) L'astroglie dans les méchanismes de régulation des ions K+ au sein des espaces extracellulaires du système nerveux central. Thesis, University of Liège
25.
GrisarT.FranckG.SchoffenielsE. (1978) K+-activation mechanisms of the (Na+, K+)-ATPase of bulk-isolated glia and neurons. In: Dynamic Properties of Glia Cells, (SchoffenielsE.FranckG.HertzL.TowerD.B., eds), Oxford, Pergamon Press, pp 359–369
26.
HansenA.J. (1977) Extracellular potassium concentration in juvenile and adult rat brain cortex during anoxia. Acta Physiol Scand99:412–420
27.
HansenA.J. (1978) The extracellular potassium concentration in brain cortex following ischemia in hypo- and hyperglycemic rats. Acta Physiol Scand102:324–329
28.
HennF.A. (1980) Separation of neuronal and glial cells and subcellular constituents. In: Advances in Cellular Neurobiology (FedoroffS.HertzL., eds), New York, Academic Press, pp 373–403
29.
HennF.A.HaljamäeH.HambergerA. (1972) Glial cell function: Active control of extracellular K+ concentration. Brain Res43:437–443
30.
HertzL. (1966) Neuroglial localization of potassium and sodium effects on respiration in brain. J Neurochem13:1373–1387
31.
HertzL. (1976) Potassium effects on transport of amino acids, inorganic ions and water: Ontogenetic and quantitative differences: In: Transport Phenomena in the Nervous System, Physiological and Pathological Aspects, Vol. 69: Advances of Experimental Medicine and Biology (LeviG.BattistinL.LajthaA., eds), New York, Plenum Press, pp 371–383
32.
HertzL. (1977) Drug-induced alterations of ion distribution at the cellular level of the central nervous system. Pharmacol Rev29:35–65
33.
HertzL. (1978a) Energy metabolism of glial cells. In: Dynamic Properties of Glia Cells (SchoffenielsE.FranckG.HertzL.TowerD.B. eds), Oxford, Pergamon Press, pp 121–132
34.
HertzL. (1978b) An intense potassium uptake into astrocytes, its further enhancement by high concentrations of potassium, and its possible involvement in potassium homeostasis at the cellular level. Brain Res145:202–208
35.
HertzL. (1979a) Functional interactions between neurons and astrocytes. I. Turnover and metabolism of putative amino acid transmitters. Prog Neurobiol13:277–323
36.
HertzL. (1979b) Inhibition by barbiturates of an intense net uptake of potassium into astrocytes. Neuropharmacology18:629–632
37.
HertzL. (1981) Astrocytes. In: Handbook of Neurochemistry, 2nd ed.Vol 1 (LajthaA., ed), New York, Plenum Press, (in press)
38.
HertzL.ChabanG. (1981) Indications for an active role of astrocytes in potassium homeostasis at the cellular level: Potassium uptake and metabolic effects of potassium. In: Current Frontiers in Neurobiology Approached Through Cell Culture, (PfeifferS., ed), Palm Beach, Fla, CRC Press (in press)
39.
HertzE.HertzL. (1979) Polarographic measurement of oxygen uptake by astrocytes in primary cultures using the tissue culture flask as the respirometer chamber. In Vitro15:429–436
40.
HertzL.SchousboeA. (1975) Ion and energy metabolism of the brain at the cellular level. Int Rev Neurobiol18:141–211
41.
HertzL.ChabanG.HertzE. (1980) Abnormal metabolic response to excess potassium in astrocytes from the jimpy mouse, a convulsing neurological mutant. Brain Res181:482–487
42.
HertzL.DittmannL.MandelP. (1973) K+-induced stimulation of oxygen uptake in cultured cerebral glial cells. Brain Res60:517–529
43.
HertzL.JuurlinkB.H.J.FosmarkH.SchousboeA. (1981) Primary culture of astrocytes. In: Current Frontiers in Neurobiology Approached Through Cell Culture (PfeifferS., ed), Palm Beach, Fla, CRC Press, (in press)
44.
HertzL.MukerjiS.BoechlerN. (1978) Phenobarbital effect on glial cell respiration in the presence of a high concentration of potassium. Biochem Pharmacol27:903–905
45.
HossmannK.A. (1980) Brain osmotic changes in ischemia; possible relation to astroglial failure. (Abstr) In: Second Beaune Conference, Scientific International Research, Montrouge, France
46.
HossmannK.A.SakakiS.ZimmermannV. (1977) Cation activities in reversible ischemia of the cat brain. Stroke8:77–81
47.
HultbornR.HydénH. (1974) Microspectrophotometric determination of nerve cell respiration at high potassium concentration. Exp Cell Res87:346–350
48.
ItoU.OhnoK.NakamuraR.SuganumaF.InabaY. (1979) Brain edema during ischemia and after restoration of blood flow. Stroke10:542–547
49.
Kao-JenJ.WilsonJ.E. (1980) Localization of hexokinase in neural tissue: Electron microscopic studies of rat cerebellar cortex. J Neurochem35:667–678
50.
KimelbergH.K.BiddlecomeS. (1980) Cl- and Na+ exchange transport properties in primary astroglial cultures from rat brain. Abstr Soc Neurosci6:548
51.
KimelbergH.K.BiddlecomeS.BourkeR.S. (1979) SITS-inhibitable Cl- transport and Na+-dependent H+ production in primary astroglial cultures. Brain Res173:111–124
52.
KimelbergH.K.NarumiS.BiddlecomeS.BourkeR.S. (1978a) (Na+ + K+) ATPase, 86Rb$ transport and carbonic anhydrase activity in isolated brain cells and cultured astrocytes. In: Dynamic Properties of Glia Cells (SchoffenielsE.FranckG.HertzL.TowerD.B. eds), Oxford, Pergamon Press, pp 347–357
53.
KimelbergH.K.NarumiS.BourkeR.S. (1978b) Enzymatic and morphological properties of primary rat brain astrocyte cultures, and enzyme developmentin vivo. Brain Res153:55–77
54.
KofkeW.A.NemotoE.M.HossmannK.A.TaylorF.KesslerP.D.StezoskiS.W. (1979) Brain blood flow and metabolism after global ischemia and post-insult thiopental therapy in monkeys. Stroke10:554–560
55.
KukesG.DeVellisJ.ElulR. (1976) A linked active transport system for Na+ and K+ in a glial cell line. Brain Res104:93–105
56.
LiptonP. (1973) Effects of membrane depolarization on light scattering by cerebral cortical slices. J Physiol (London)231:365–383
57.
LodinZ.HartmanJ.KageM.P.KořínkovaP.BooherJ. (1971) Potassium-induced hydration in cultured neural tissue. Neurobiology1:69–85
58.
Lund-AndersenH.HertzL. (1970) Effects of potassium and glutamate on swelling and on sodium and potassium content in brain cortex slices from adult rats. Exp Brain Res11:199–212
59.
McLennanH. (1976) The autoradiographic localization of L-[3H] glutamate in rat brain tissue. Brain Res115:139–144
60.
MøllerM.Lund-AndersenH.MøllgårdK.HertzL. (1974) Concordance between morphological and biochemical estimates of fluid spaces in rat brain cortex slices. Exp Brain Res22:299–314
61.
MoonenG. (1980) Aspects structuraux et fonctionnels de la croissance et de la différenciation d'astrocytes et de neurones cultivés in vitro. Thesis, University of Liége
62.
MoonenG.FranckG.SchoffenielsE. (1980) Glial control of neuronal excitability in mammals: I. Electrophysiological and isotopic evidence in culture. Neurochem Int2:299–310
63.
NorenbergM.D. (1981) Astrocytic abnormalities in hepatic dysfunction. In: Advances in Cellular Neurobiology, Vol 2 (FedoroffS.HertzL., eds), New York, Academic Press, pp 303–351
64.
NorenbergM.D.Martinez-HernandezA. (1979) Fine structural localization of glutamine synthetase in astrocytes of rat brain. Brain Res161:303–310
65.
OlsonJ.D.HoltzmanD. (1980) Respiration in astrocytes from primary cultures and established cell lines during exposure to altered osmolarity. Abstr Soc Neurosci6:547
66.
OlsonJ.E.HoltzmanD. (1981a) Respiration in rat cerebral astrocytes from primary culture. J Neurosci Res5:497–506
67.
OlsonJ.D.HoltzmanD. (1981b) Environmental factors influencing the growth and respiration of rat cerebral astrocytes in primary culture. Neurochem Res (in press)
68.
PappiusH.ElliottK.A.C. (1956) Water distribution in incubated slices of brain and other tissues. Can J Biochem Physiol34:1007–1022
69.
PetitoC. (1980) Astrocytic, mitochondrial and endothelial changes in experimental ischemia and infarction. (Abstr) In: Second Beaune Conference, Scientific International Research, Montrouge, France
PotterR.L.HertzE.YuA.SchousboeA.HertzL. (1981) Metabolic fate of glutamate and glutamine in cultured astrocytes and neurons. Trans Am Soc Neurochem12:159
72.
PulsinelliW.A.BrierleyJ.B. (1979) A new model of bilateral hemispheric ischemia in the unanesthetized rat. Stroke10:267–272
73.
PulsinelliW.A.DuffyT.E. (1979) Local cerebral glucose metabolism during controlled hypoxemia in rats. Science204:626–629
74.
ReubenI.P.LopezE.BrandtP.W.GrundfestH. (1963) Muscle: Volume changes in isolated single fibres. Science142:246–248
75.
Roth-SchechterB.SensenbrennerM.MandelP. (1976) Effet du pentobarbital sur la morphologie et la respiration des cellules gliales en culture primaire. CR Acad Sci283:1333–1335
76.
RousselG.DelaunoyJ-PNussbaumJ-LMandelP. (1979) Demonstration of a specific localization of carbonic anhydrase C in the glial cells of rat CNS by an immunohistochemical method. Brain Res160:47–55
77.
SalfordL.G.PlumF.SiesjöB.K. (1973) Graded hypoxia-oligemia in rat brain. Arch Neurol29:227–233
78.
SchousboeA.NissenC.BockE.SapirsteinV.JuurlinkB.H.J.HertzL. (1980) Biochemical development of rodent astrocytes in primary cultures. In: Tissue Culture in Neurobiology (GiacobiniE.VernadakisA.ShaharA., eds), New York, Raven Press, pp 397–409
79.
SensenbrennerM.LabourdetteG.DelaunoyJ.P.PettmannB.DevilliersG.MoonenG.BockE. (1980) Morphological and biochemical differentiation of glial cells in primary culture. In: Tissue Culture in Neurobiology (GiacobiniE.VernadakisA.ShaharA., eds), New York, Raven Press, pp 385–395
80.
ShanesA.M. (1946) A neglected factor in studies of potassium distribution in relation to the resting potential of nerve. J Cell Comp Physiol27:115–118
81.
TrachtenbergM.C.PackeyD.J. (1980) Preliminary characterization of Müller cells isolated from rabbit retina. Abstr Soc Neurosci6:325
82.
VyskočilF.KřižN.BurešJ. (1972) Potassium-selective microelectrodes used for measuring the extracellular brain potassium during spreading depression and anoxic depolarization in rats. Brain Res39:255–259
83.
WelshF.A.GreenbergJ.H.JonesS.C.GinsbergM.D.ReivichM. (1980) Correlation between glucose utilization and metabolite levels during focal ischemia in cat brain. Stroke11:79–84
84.
WiethJ.O. (1979) Bicarbonate exchange through the human red cell membrane determined with [14C] bicarbonate. J Physiol (London)294:521–539