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The mechanisms of sodium absorption in the human small intestine.
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Electrical potential measurements on single nephrons of Necturus.
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The mechanism of solute transport by the gall-bladder.
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The mechanism of establishment of secretory potentials in sublingual gland cells.
Acta Physiol Scand. 1957 Sep 17;40(1):35-58
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[Emdocytotic phase of protein absorption in the proximal renal tubule. Studies of ferritin absorption in the single of the rat kidney].
Virchows Arch B Cell Pathol. 1969;2(4):361-79
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Contributions of unstirred-layer effects to apparent electrokinetic phenomena in the gall-bladder.
J Membr Biol. 1969 Dec;1(1):92-108
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The ultrastructural route of fluid transport in rabbit gall bladder.
J Gen Physiol. 1967 Sep;50(8):2031-60
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Route of passive ion permeation in epithelia.
Nat New Biol. 1972 Jan 5;235(53):9-13
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A STUDY OF THE STRUCTURE AND DISTRIBUTION OF THE NEXUS.
J Cell Biol. 1964 Dec;23:553-85
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Heaviside's "Bessel cable" as an electric model for flat simple epithelial cells with low resistive junctional membranes.
J Theor Biol. 1971 Jan;30(1):59-68
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Freeze-etch appearance of the tight junctions in the epithelium of small and large intestine of mice.
Protoplasma. 1969;67(2):165-84
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Osmotic flow across proximal tubule of Necturus: correlation of physiologic and anatomic studies.
Am J Physiol. 1969 Aug;217(2):570-80
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[Studies of the transmission of excitation in the ventricle of the rat by means of hypertonic solutions].
Pflugers Arch Gesamte Physiol Menschen Tiere. 1966;292(1):13-33
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Junctional complexes in various epithelia.
J Cell Biol. 1963 May;17:375-412
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Tight junctions between cells in the early chick embryo as visualized with the electron microscopy.
J Cell Biol. 1966 Oct;31(1):C6-10
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A comparison of the electrical resistances of the surface cell membrane and cellular wall in the proximal tubule of the newt kidney.
Jpn J Physiol. 1967 Dec 15;17(6):627-37
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Absorption of ferritin by rat kidney proximal tubule cells. Electron microscopic observations of the initial uptake phase in cells of microperfused single proximal tubules.
J Ultrastruct Res. 1966 Sep;16(1):1-12
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Standing-gradient osmotic flow. A mechanism for coupling of water and solute transport in epithelia.
J Gen Physiol. 1967 Sep;50(8):2061-83
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The mechanism of cation permeation in rabbit gallbladder : Dilution potentials and biionic potentials.
J Membr Biol. 1971 Dec;4(1):358-94
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Structure of coupled and uncoupled cell junctions.
J Cell Biol. 1968 Jun;37(3):621-32
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Electrical properties of isolated cells of Necturus gastric mucosa.
Biochim Biophys Acta. 1971 Aug 13;241(2):261-72
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STUDIES ON AN EPITHELIAL (GLAND) CELL JUNCTION. I. MODIFICATIONS OF SURFACE MEMBRANE PERMEABILITY.
J Cell Biol. 1964 Sep;22:565-86
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Effects of pH and polyvalent cations on the selective permeability of gall-bladder epithelium to monovalent ions.
Biochim Biophys Acta. 1968 Aug;163(1):57-74
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The ultrastructure of the nexus. A correlated thin-section and freeze-cleave study.
J Cell Biol. 1970 Dec;47(3):666-88
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[Membrane potential in kidney tubules of Triturus pyrrhogaster].
Jpn J Pharmacol. 1961 Sep;11:65-71
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The transport of salt and water across isolated rat ileum. Evidence for at least two distinct pathways.
J Gen Physiol. 1967 Jan;50(3):695-727
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Gap junctions occur in vertebrate renal proximal tubule cells.
J Cell Biol. 1970 Nov 1;47(2):513-5
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Intercellular Communication: Renal, Urinary Bladder, Sensory, and Salivary Gland Cells.
Science. 1965 Jul 16;149(3681):295-8
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The mechanism of cation permeation in rabbit gallbladder : Conductances, the current-voltage relation, the concentration dependence of anion-cation discrimination, and the calcium competition effect.
J Membr Biol. 1971 Dec;4(1):331-57
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The effect of osmotically induced water flows on the permeability and ultrastructure of the rabbit gallbladder.
J Membr Biol. 1972 Dec;7(1):164-97
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The flow of solute and solvent across a two-membrane system.
J Theor Biol. 1963 Nov;5(3):426-42
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A fine structural analysis of intercellular junctions in the mouse liver.
J Cell Biol. 1970 May;45(2):272-90
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The voltage dependence of the cardiac membrane conductance.
Biophys J. 1962 Sep;2:381-93
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PROPAGATION OF ACTION POTENTIALS AND THE STRUCTURE OF THE NEXUS IN CARDIAC MUSCLE.
J Gen Physiol. 1965 May;48:797-823
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NATURE OF SHUNT PATH AND ACTIVE SODIUM TRANSPORT PATH THROUGH FROG SKIN EPITHELIUM.
Acta Physiol Scand. 1964 Aug;61:484-504
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Permeability of membrane junctions.
Ann N Y Acad Sci. 1966 Jul 14;137(2):441-72
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A model system for biological water transport.
Nature. 1962 Jan 27;193:347-8
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The effect of internal and external potassium concentration on the membrane potential of frog muscle.
J Physiol. 1956 Sep 27;133(3):631-58
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