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Open AccessJournal ArticleDOI

Contributions of the sodium pump and ionic gradients to the membrane potential of a molluscan neurone

A. L. F. Gorman, +1 more
- 01 Nov 1970 - 
- Vol. 210, Iss: 4, pp 897-917
TLDR
The membrane potential of the gastro‐oesophageal giant neurone of the marine mollusc, Anisodoris nobilis, was examined during changes of temperature and of the ionic medium.
Abstract
1. The membrane potential of the gastro-oesophageal giant neurone of the marine mollusc, Anisodoris nobilis, was examined during changes of temperature and of the ionic medium.2. The response of the membrane potential to rapid changes in the external K concentration was prompt, stable, and reversible up to 200 mM-K, and was independent of the external Cl concentration.3. Warming the cell produced a prompt hyperpolarization that was approximately 10 times greater than predicted by the Nernst or constant field equations. Electrogenic activity of the Na-K exchange pump was shown to be responsible for this effect.4. At temperatures below 5 degrees C, the relationship between the membrane potential and the external K concentration could be predicted by a constant field equation.5. At temperatures above 5 degrees C, the membrane potential could not be predicted by the constant field equation except after inhibition of the electrogenic Na pump with ouabain or the reduction of internal Na.6. Inhibition of the electrogenic Na pump by low external K concentrations was dependent upon the external Na concentration.7. It is concluded that the membrane potential is the sum of ionic and metabolic components, and that the behaviour of the ionic component can be predicted by a constant field type equation.

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References
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Journal ArticleDOI

The effect of ions on the membrane potential of snail neurones.

TL;DR: It is suggested that the membrane permeability to potassium is reduced in physiological Ringers and that the potassium concentration varies throughout the year.
Journal ArticleDOI

Some effects of changes in ionic concentration on the action potential of sympathetic ganglion cells in the frog.

TL;DR: The action potential of sympathetic ganglion celLs in the frog always includes a phase of after-hyperpolarization, or 'positive phase', which is identical with that given for the existence of the positive phase of the action potential in cephalopod axons.
Journal ArticleDOI

The effect of temperature changes on the activity on the neurones of the snail Helix aspersa

TL;DR: The results show that the resting potentials of many cells after a change in temperature tended to return to their initial value (adapted), even if the temperature was maintained at the new level.
Journal ArticleDOI

Membrane Potential as the Sum of Ionic and Metabolic Components

TL;DR: The resting potential of a molluscan neuron can be separated experimentally into two components: one which depends on ionic gradients and permeabilities in accordance with the Goldman equation, and a secondWhich depends on the electrogenicity of active sodium transport.
Journal ArticleDOI

The Input-Output Organization Of a Pair of Giant Neurones in the Mollusc, Anisodoris Nobilis (MACFARLAND)

TL;DR: The results show that the G cell functions as a command interneurone for an aggregate of electrically interconnected peripheral neurones in the nudibranch mollusc Anisodoris nobilis.
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