Which of the following ions enters the muscle fiber through chemically gated ion channels activated by ACh?

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Multiple Choice

Which of the following ions enters the muscle fiber through chemically gated ion channels activated by ACh?

Explanation:
The correct answer is that sodium ions enter the muscle fiber through chemically gated ion channels activated by acetylcholine (ACh). When a nerve impulse arrives at the neuromuscular junction, ACh is released from the motor neuron and binds to receptors on the muscle fiber's plasma membrane. This interaction causes the chemically gated ion channels to open, resulting in an influx of sodium ions into the muscle cell. This influx of sodium ions depolarizes the membrane, leading to the generation of an action potential. This is a critical first step in muscle contraction, as the action potential propagates along the muscle fiber, leading to further events such as the release of calcium ions from the sarcoplasmic reticulum, which ultimately triggers muscle contraction. The role of sodium ions is fundamental in initiating the electrical changes necessary for muscle fiber excitation and subsequent contraction, highlighting the importance of ACh in neuromuscular signaling.

The correct answer is that sodium ions enter the muscle fiber through chemically gated ion channels activated by acetylcholine (ACh). When a nerve impulse arrives at the neuromuscular junction, ACh is released from the motor neuron and binds to receptors on the muscle fiber's plasma membrane. This interaction causes the chemically gated ion channels to open, resulting in an influx of sodium ions into the muscle cell.

This influx of sodium ions depolarizes the membrane, leading to the generation of an action potential. This is a critical first step in muscle contraction, as the action potential propagates along the muscle fiber, leading to further events such as the release of calcium ions from the sarcoplasmic reticulum, which ultimately triggers muscle contraction.

The role of sodium ions is fundamental in initiating the electrical changes necessary for muscle fiber excitation and subsequent contraction, highlighting the importance of ACh in neuromuscular signaling.

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