Electrotonic Potentials, Local Response, & Firing Level
المؤلف:
Kim E. Barrett, Susan M. Barman, Heddwen L. Brooks, Jason X.-J. Yuan
المصدر:
Ganongs Review of Medical Physiology
الجزء والصفحة:
25th E, P92-93
2026-08-23
53
Although subthreshold stimuli do not produce an action potential, they do have an effect on the membrane potential. This can be demonstrated by placing recording electrodes within a few millimeters of a stimulating electrode and applying subthreshold stimuli of fixed duration. Application of such currents leads to a localized depolarizing potential change that rises sharply and decays exponentially with time. The magnitude of this response drops off rapidly as the distance between the stimulating and recording electrodes is increased. Conversely, an anodal current produces a hyperpolarizing potential change of similar duration. These potential changes are called electrotonic potentials. As the strength of the current is increased, the response is greater due to the increasing addition of a local response of the membrane (Figure 1). Finally, at 7–15 mV of depolarization (potential of –55 mV), the firing level (threshold potential) is reached and an action potential occurs.

Fig1. Electrotonic potentials and local response. The changes in the membrane potential of a neuron following application of stimuli of 0.2, 0.4, 0.6, 0.8, and 1.0 times threshold intensity are shown superimposed on the same time scale. The responses below the horizontal line are those recorded near the anode, and the responses above the line are those recorded near the cathode. The stimulus of threshold intensity was repeated twice. Once it caused a propagated action potential (top line), and once it did not.
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