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A further note on Nile blue.
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Analysis of the potential-dependent changes in optical retardation in the squid giant axon.
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Properties of squid axon membrane as revealed by a hydrophobic probe, 2-p-toluidinylnaphthalene-6-sulfonate.
Proc Natl Acad Sci U S A. 1971 May;68(5):938-41
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Changes in light scattering associated with the action potential in crab nerves.
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Methods for the demonstration of lipid applied to compact bone.
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The use of Nile blue sulphate in the histochemical identification of phospholipids.
Stain Technol. 1968 Sep;43(5):249-56
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The kinetics of mechanical activation in frog muscle.
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Impedance of frog skeletal muscle fibers in various solutions.
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Ionic conductances of the surface and transverse tubular membranes of frog sartorius fibers.
J Gen Physiol. 1969 Mar;53(3):279-97
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Capacitance of the surface and transverse tubular membrane of frog sartorius muscle fibers.
J Gen Physiol. 1969 Mar;53(3):265-78
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A large change in axon fluorescence that provides a promising method for measuring membrane potential.
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Chromatographic separation and photometric analysis of the components of Nile blue sulphate.
Stain Technol. 1968 Sep;43(5):243-8
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Optical recording of impulses in individual neurones of an invertebrate central nervous system.
Nature. 1973 Dec 21-28;246(5434):508-9
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Changes in fluorescence, turbidity, and birefringence associated with nerve excitation.
Proc Natl Acad Sci U S A. 1968 Nov;61(3):883-8
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Voltage dependent charge movement of skeletal muscle: a possible step in excitation-contraction coupling.
Nature. 1973 Mar 23;242(5395):244-6
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Circuit models of the passive electrical properties of frog skeletal muscle fibers.
J Gen Physiol. 1974 Apr;63(4):432-59
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Further studies of nerve membranes labeled with fluorescent probes.
J Membr Biol. 1973;11(4):353-76
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Fluorescence of squid axon membrane labelled with hydrophobic probes.
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Deuterium oxide: inhibition of calcium release in muscle.
Science. 1972 Apr 28;176(4033):406-7
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Skeletal muscle.
Annu Rev Physiol. 1970;32:87-138
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Transient changes in extrinsic fluorescence of nerve produced by electric stimulation.
Proc Natl Acad Sci U S A. 1969 Dec;64(4):1362-8
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Linear electrical properties of the transverse tubules and surface membrane of skeletal muscle fibers.
J Gen Physiol. 1970 Nov;56(5):640-71
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Changes in light scattered by striated muscle during excitation-contraction coupling.
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The sarcoplasmic reticulum and transverse tubules of the frog's sartorius.
J Cell Biol. 1965 Jun;25(3):Suppl:209-31
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Changes in transparency of muscle during a twitch.
J Physiol. 1949 May 15;108(3):292-302
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The potassium and chloride conductance of frog muscle membrane.
J Physiol. 1962 Aug;163(1):61-103
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The influence of potassium and chloride ions on the membrane potential of single muscle fibres.
J Physiol. 1959 Oct;148:127-60
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Effect of heavy water on different types of muscle and on glycerol-extracted psoas fibres.
Nature. 1960 Jan 16;185:172-3
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Potassium conductance of frog muscle membrane under controlled voltage.
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ACTION CURRENT OF STRIATED MUSCLE IN HEAVY WATER.
Am J Physiol. 1964 Oct;207:944-6
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THE EFFECTS OF ANIONS ON EXCITABLE CELLS.
Pharmacol Rev. 1964 Jun;16:193-221
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THE DISTRIBUTION OF PHOSPHOLIPID WITHIN MACROPHAGES IN HUMAN ATHEROMATOUS PLAQUES.
J Atheroscler Res. 1964 Mar-Apr;4:144-50
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LINEAR ELECTRICAL PROPERTIES OF STRIATED MUSCLE FIBRES OBSERVED WITH INTRACELLULAR ELECTRODES.
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The effect of deuterium oxide on the mechanical properties of muscle.
Acta Physiol Scand. 1961 Sep;53:75-84
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The mechanical properties of relaxing muscle.
J Physiol. 1960 Jun;152:30-47
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Potassium chloride movement and the membrane potential of frog muscle.
J Physiol. 1960 Apr;151:154-85
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The contractile process is not associated with potential changes.
J Cell Physiol. 1953 Aug;42(1):103-23
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The effect of stimulation on the diffraction of light by striated muscle.
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An analysis of the end-plate potential recorded with an intracellular electrode.
J Physiol. 1951 Nov 28;115(3):320-70
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Changes in axon fluorescence during activity: molecular probes of membrane potential.
J Membr Biol. 1974;19(1):1-36
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Light scattering and birefringence changes during nerve activity.
Nature. 1968 May 4;218(5140):438-41
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Changes in light scattering that accompany the action potential in squid giant axons: potential-dependent components.
J Physiol. 1972 Aug;224(3):701-25
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Changes in axon birefringence during the action potential.
J Physiol. 1970 Dec;211(2):495-515
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