Changes in Excitability During Electrotonic Potentials & the Action Potential
المؤلف:
Kim E. Barrett, Susan M. Barman, Heddwen L. Brooks, Jason X.-J. Yuan
المصدر:
Ganongs Review of Medical Physiology
الجزء والصفحة:
25th E, P93
2026-08-26
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During the action potential, as well as during electrotonic potentials and the local response, the threshold of the neuron to stimulation changes (Figure 1). Hyperpolarizing responses elevate the threshold, and depolarizing potentials lower it as they move the membrane potential closer to the firing level. During the local response, the threshold is lowered, but during the rising and much of the falling phases of the spike potential, the neuron is refractory to stimulation. This refractory period is divided into an absolute refractory period, corresponding to the period from the time the firing level is reached until repolarization is about one-third complete, and a relative refractory period, lasting from this point to the start of after-depolarization. During the absolute refractory period, no stimulus, no matter how strong, will excite the nerve. However, during the relative refractory period, stronger than normal stimuli can cause excitation. These changes in threshold are correlated with the phases of the action potential in Figure 1.

Fig1. Changes in membrane potential and relative membrane permeability to Na+ and K+ during an action potential. Steps 1 through 7 are detailed in the text. These changes in threshold for activation (excitability) are correlated with the phases of the action potential. (Modified with permission from Silverthorn DU: Human Physiology: An Integrated Approach, 5th ed. Pearson, 2010.)
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