Puffer Fish Poison Blocks Voltage Gated Sodium Channels Like A Cork
Puffer Fish Poison Blocks Voltage Gated Sodium Channels Like A Cork. The axon would be unable to generate action potentials. What effect would this neurotoxin have on the function of neurons?

The axon would be unable to generate action potentials. When sodium ion channels are blocked, a neuron cannot generate an action potential and transmission of information fails. Neuron will only be capable of producing graded potentials:
Neuron Will Only Be Capable Of Producing Graded Potentials:
What effect would this neurotoxin have on the function of neurons? The axon would be unable to generate action potentials. Action potentials would lack a repolarization phase.
What Effect Would This Neurotoxin Have In The Function Of Neurons?
What effect would this neurotoxin have on the function of neurons? The axon would be unable to generate action potentials. The axon would be unable to generate action potentials.
Neurons Would Depolarize More Rapidly.
What effect would this neurotoxin have on the function of neurons? Some types of pufferfish contain a neurotoxin called tetrodotoxin (ttx). C) the axon would be unable to generate action potentials.
This Toxin Blocks Sodium Ion Channels In The Membranes Of Nerve Cells.
Almost all pufferfish contain tetrodotoxin, a substance that makes them foul tasting and often lethal to fish. The absolute refractory period would be shorter than normal. What effect would this toxin have on the function of neurons?
Action Potentials Would Lack A Repolarization Phase.
D) the membrane begins to hyperpolarize. A) the axon would be unable to generate action potentials b) neurons would depolarize more rapidly c) the absolute refractory period would be shorter than normal d) action potentials would lack a repolarization phase When sodium ion channels are blocked, a neuron cannot generate an action potential and transmission of information fails.
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