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2.
DavisH.TasakiI.SmithC. A.DeatherageB. H.: Cochlear Potentials After Intracochlear Injections and Anoxia. Federation Proc.14: 35, 1955.
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StumpfP. K.: Factors Influencing Glycolysis; Chemical Pathways of Metabolism. Edited by GreenbergD.M., Academic Press Inc., Publishers, New York, 1: 92, 1954.
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KrebsH. A.: Inhibition of Oxidative Phosphorylation. Ibid.1: 170, 1954.
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KoideY.ImokawaM.: Histochemical Studies on the Labyrinthine Metabolism. Zibi Rinsho (Jap.)1958. In press.
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CunninghamB.KirkP. L.BrooksS. C.: Potentiometric Determination of Chloride. J. Biol. Chem.139: 11, 1941.
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VosteenK. H.: Die Darstellung der Bernsteinsäuredehydrogenase in der Schnecke des Meerschweichens. Arch. Ohren-usw. Heilk. u. Z. Hals- usw. Heilk.168: 295, 1956.
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VosteenK. H.: Die Tetrazolium reaktion in der Meerschweinchen Schnecke nach Blockierung der Zellatmung durch Kalium Cyanid. Ibid.169: 415, 1956.
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VosteenK. H.: Untersuchungen über den Grundstoffwechsel im innenohr des Meerschweinchens. Z. Laryng. Rhin. and Otol.35: 400, 1956.
12.
MizukoshiO.TadakiN.TojoT.HiyoY.UnoM.HayashidoH.NakaiY.YanagawaY.: Studies of Succinic Dehydrogenase in the Cochlea and in the Auditory Center. Jap. Jour. Otol., Tokyo, 60: Suppl.: 342, 1957.
13.
KoideY.YoshidaM.: Unpublished.
14.
KoideY.KonnoM.MorimotoM.: Oxigraphic Measurement of the Oxygen Tension in the Labyrinth. Annals of Otology, Rhinology and Laryngology67: 348 (June) 1958.
15.
ClarkL. C.WolfR.GrangerD.TaylorZ.: Continuous Recording of Blood Oxygen Tensions by Polarography. J. Appl. Physiol.6: 189, 1953–1954.
16.
KoideY.YoshidaM.KonnoM.: The Effect of Cutting the Labyrinthine Artery on the Oxygen Tension in the Labyrinth. Annals of Otology, Rhinology and Laryngology. In press.
17.
SmithA. C.LowryO. H.WuM. L.: The Electrolytes of the Labyrinthine Fluids. Laryngoscope.64: 141, 1954.
18.
WeverE. G.LawrenceM.HemphillR. W.StrautC. B.: Effects of Oxygen Deprivation upon the Cochlear Potentials. Amer. J. Physiol.159: 199, 1949.
19.
GisselsonL.: Experimental Investigation into the Problem of Humoral Transmission in the Cochlea. Acta Oto-laryng., Suppl. 82, 1950.
20.
GisselsonL.: The Effect of of Oxygen Lack and Decreased Blood Pressure on the Microphonic Response of the Cochlea. Acta Oto-laryn.44: 101, 1954.
21.
FernandezC.: The Effect of Oxygen Lack on Cochlear Potentials. Annals of Otology, Rhinology and Laryngology64: 1193 (Dec.) 1955.
22.
MaruyamaN.: Experimental Observations on the Labyrinthine Blood Flow and the Hearing. Jap. Jour. Otol., Tokyo, 59: 717, 1956.
23.
GulickW. L.: The Effects of Hypoxemia upon the Electrical Response of the Cochlea. Annals of Otology, Rhinology and Laryngology67: 148 (Mar.) 1958.
24.
AshfordC. A.DixonK. C.: The Effect of Potassium on the Glucolysis of Brain Tissue with Reference to the Pasteur Effect. Biochem. J.29: 157, 1935.
25.
DickensF.GrevilleG. D.: The Metabolism of Normal and Tumor Tissue: Neutral Salt Effects. Biochem. J.29: 1468, 1935.
26.
DixonK. C.: Action of Potassium Ions on Brain Metabolism. J. Physiol.110: 87, 1949.
27.
BrinkF.: The Role of Calcium Ions in Neural Processes. Pharmacol. Rev.6: 243, 1954.