A quantitative description of membrane current and its application to conduction and excitation in nerve
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Summary
This article concludes a series of papers concerned with the flow of electric current through the surface membrane of a giant nerve fibre by putting them into mathematical form and showing that they will account for conduction and excitation in quantitative terms.
- Type
- article
- Published
- 1952-08-28
- Cited by
- 18,802
- References
- 17
- Access
- Open access
- OpenAlex
- https://openalex.org/W1985940938
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20873334
Keywords
Current (fluid), Content (measure theory), Excitation, Neuroscience, Thermal conduction
References
- The ionic movements during nervous activity
- Currents carried by sodium and potassium ions through the membrane of the giant axon of Loligo
- The components of membrane conductance in the giant axon of Loligo
- Measurement of current‐voltage relations in the membrane of the giant axon of Loligo
- Correlation of local excitability with local physiological response in the giant axon of the squid (loligo)
- The dual effect of membrane potential on sodium conductance in the giant axon of Loligo
- ELECTRIC IMPEDANCE OF THE SQUID GIANT AXON DURING ACTIVITY
- RECTIFICATION AND INDUCTANCE IN THE SQUID GIANT AXON
- The effect of temperature on the electrical activity of the giant axon of the squid
- POTENTIAL, IMPEDANCE, AND RECTIFICATION IN MEMBRANES
- THE IONIC BASIS OF ELECTRICAL ACTIVITY IN NERVE AND MUSCLE
- LONGITUDINAL IMPEDANCE OF THE SQUID GIANT AXON
- Ionic Currents Underlying Activity in the Giant Axon of the Squid
- A study of nerve physiology.
- A Study Of Nerve Physiology
Cited by
- The modelling of a burst-generating neuron with a field-effect transistor analog
- A method for evaluation of the electric potential field of a neuron with time-dependent surface potential.
- Towards a molecular theory of the nerve membrane: the sufficiency of a single-ion queue.
- Analysis of pace‐maker and repolarization currents in frog atrial muscle.
- Letter: pronase and models for the sodium conductance
- [Transmembrane inward currents during excitation of the heart (author's transl)].
- An Evolutionary Strategy for Supervised Training of Biologically Plausible Neural Networks
- Lidocaine blockade of continuously and transiently accessible sites in cardiac sodium channels.
- Properties of three different ion channels in the plasma membrane of the slime mold Dictyostelium discoideum.
- Electrophysiological study on a cochlear outer hair cell.
- The messages in optic nerve fibers and their interpretation.
- Spiking Neuron Network for Image Segmentation
- An eikonal-curvature equation for action potential propagation in myocardium
- Mathematical modeling of the excitation process in myocardial tissue: influence of fiber rotation on wavefront propagation and potential field.
- Is the site of action of grayanotoxin the sodium channel gating of squid axon?
- The voltage-dependent blocking effect of phalloidin on the delayed potassium current of voltage-clamped frog skeletal muscle fibres.
- Distribution of Saxitoxin‐binding Sites in Mammalian Neural Tissue
- Kinetic analysis of voltage‐ and ion‐dependent conductances in saccular hair cells of the bull‐frog, Rana catesbeiana.
- Kinetics of sodium activation in giant axons of squid (Doryteuthis bleekeri).
- Electrochemistry of artificial ultrathin lipid membranes
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