Retardation currents in excitable membranes and models of flicker noise
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[1] B. Neumcke,et al. 1/f noise in membranes , 1978, Biophysics of structure and mechanism.
[2] A G Hawkes,et al. Relaxation and fluctuations of membrane currents that flow through drug-operated channels , 1977, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[3] G. Bruin,et al. Potassium ion noise currents and inactivation in voltage-clamped node of Ranvier , 1977, Nature.
[4] A. Holden,et al. A model for flicker noise in nerve membranes , 1976, Biological Cybernetics.
[5] M. Weissman. Models for 1/f noise in nerve membranes. , 1976, Biophysical journal.
[6] Y. Chen. Differentiation of channel models by noise analysis. , 1976, Biophysical journal.
[7] C. Schauf,et al. Slow sodium inactivation in Myxicola axons. Evidence for a second inactive state. , 1976, Biophysical journal.
[8] F. N. Hooge,et al. 1/f noise , 1976 .
[9] A. Holden. Letter: Flicker noise and structural changes in nerve membrane. , 1976, Journal of theoretical biology.
[10] E Wanke,et al. Channel noise in nerve membranes and lipid bilayers , 1975, Quarterly Reviews of Biophysics.
[11] C. Armstrong,et al. Ionic pores, gates, and gating currents , 1974, Quarterly Reviews of Biophysics.
[12] T. L. Hill,et al. Fluctuations and noise in kinetic systems. Application to K+ channels in the squid axon. , 1973, Biophysical journal.
[13] B. Khodorov,et al. Slow sodium inactivation in the Ranvier node membrane role of external potassium , 1973, Bulletin of Experimental Biology and Medicine.
[14] Ruseĭkin Ns. Effect of lung perfusates on blood coagulation and fibrinolysis , 1973 .
[15] C F Stevens,et al. Inferences about membrane properties from electrical noise measurements. , 1972, Biophysical journal.
[16] T. L. Hill,et al. On the theory of ion transport across the nerve membrane. IV. Noise from the open-close kinetics of K + channels. , 1972, Biophysical journal.
[17] D. Noble,et al. A transition state theory approach to the kinetics of conductance changes in excitable membranes , 1969, The Journal of Membrane Biology.
[18] D. Noble,et al. The kinetics and rectifier properties of the slow potassium current in cardiac Purkinje fibres , 1968, The Journal of physiology.
[19] L. Moore. Membrane currents at large positive internal potentials in single myelinated nerve fibres of rana pipiens , 1967, The Journal of physiology.
[20] G. Ehrenstein,et al. Slow changes of potassium permeability in the squid giant axon. , 1966, Biophysical journal.
[21] B. Frankenhaeuser,et al. The effect of temperature on the sodium and potassium permeability changes in myelinated nerve fibres of Xenopus laevis , 1963, The Journal of physiology.
[22] B. Frankenhaeuser,et al. The specificity of the initial current in myelinated nerve fibres of Xenopus laevis. Voltage clamp experiments , 1963, The Journal of physiology.
[23] B. Frankenhaeuser,et al. Quantitative description of sodium currents in myelinated nerve fibres of Xenopus laevis , 1960, The Journal of physiology.
[24] B. Frankenhaeuser,et al. Membrane resistance and conduction velocity of large myelinated nerve fibres from Xenopus laevis , 1959, The Journal of physiology.
[25] R. Kubo. Statistical-Mechanical Theory of Irreversible Processes : I. General Theory and Simple Applications to Magnetic and Conduction Problems , 1957 .
[26] A. Hodgkin,et al. A quantitative description of membrane current and its application to conduction and excitation in nerve , 1952, The Journal of physiology.
[27] J. Kirkwood. The statistical mechanical theory of irreversible processes , 1949 .
[28] D. E. Goldman. POTENTIAL, IMPEDANCE, AND RECTIFICATION IN MEMBRANES , 1943, The Journal of general physiology.
[29] J. Schwarz,et al. Potassium inactivation in single myelinated nerve fibres of Xenopus laevis , 2004, Pflügers Archiv.
[30] H. Lüttgau. Das Kalium-Transportsystem am Ranvier-Knoten isolierter markhaltiger Nervenfasern , 2004, Pflüger's Archiv für die gesamte Physiologie des Menschen und der Tiere.
[31] Hans-Christoph Lüttgau. Das Kalium-Transportsystem am Ranvier-Knoten isolierter markhaltiger Nervenfasern , 2004, Pflüger's Archiv für die gesamte Physiologie des Menschen und der Tiere.
[32] W. Ulbricht. Ionic channels and gating currents in excitable membranes. , 1977, Annual review of biophysics and bioengineering.
[33] B. Hille. Gating in sodium channels of nerve. , 1976, Annual review of physiology.
[34] E. Rojas. Gating mechanism for the activation of the sodium conductance in nerve membranes. , 1976, Cold Spring Harbor symposia on quantitative biology.
[35] A. Holden. Models of the stochastic activity of neurones , 1976 .
[36] S J Singer,et al. The molecular organization of membranes. , 1974, Annual review of biochemistry.
[37] S. Singer. 4 – THE MOLECULAR ORGANIZATION OF BIOLOGICAL MEMBRANES , 1971 .
[38] B. Hille,et al. Ionic channels in nerve membranes. , 1970, Progress in biophysics and molecular biology.
[39] B. Frankenhaeuser,et al. A quantitative description of potassium currents in myelinated nerve fibres of Xenopus laevis , 1963, The Journal of physiology.
[40] Melvin Lax,et al. Fluctuations from the Nonequilibrium Steady State , 1960 .