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Multiple Choice
An action potential is self-regenerating because __________.
A
the depolarization of one segment of the axon triggers the opening of voltage-gated Na$^+$ channels in the next segment
B
neurotransmitters are continuously released along the entire length of the axon
C
the axon membrane is impermeable to ions during an action potential
D
potassium ions rapidly enter the neuron, causing further depolarization
Verified step by step guidance
1
Understand the concept of an action potential: An action potential is a rapid electrical signal that travels along the membrane of a neuron. It is initiated by a change in membrane potential and involves the movement of ions across the membrane.
Recall the role of voltage-gated Na⁺ channels: During an action potential, depolarization occurs when voltage-gated Na⁺ channels open, allowing Na⁺ ions to enter the neuron. This influx of positive ions causes the membrane potential to become more positive.
Learn about the propagation mechanism: The depolarization of one segment of the axon triggers the opening of voltage-gated Na⁺ channels in the adjacent segment. This creates a chain reaction, allowing the action potential to propagate along the axon.
Eliminate incorrect options: Neurotransmitters are released at synapses, not along the entire axon. The axon membrane is not impermeable to ions during an action potential; ion movement is essential for the process. Potassium ions exit the neuron during repolarization, not enter during depolarization.
Conclude why the correct answer is valid: The self-regenerating nature of the action potential is due to the sequential opening of voltage-gated Na⁺ channels in adjacent segments of the axon, ensuring the signal travels efficiently.