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Acetylcholine (ACh) does not remain on the post-synaptic membrane because it is rapidly broken down by the enzyme acetylcholinesterase. This enzymatic degradation occurs in the synaptic cleft, preventing prolonged stimulation of the post-synaptic receptors. Additionally, the reuptake of choline into the pre-synaptic neuron helps recycle components for future neurotransmitter synthesis. This process ensures that synaptic transmission is brief and precisely regulated.

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Why does't acetylcholine remain on the postsynaptic neuron?

Acetylcholine does not remain on the postsynaptic neuron because it is rapidly broken down by the enzyme acetylcholinesterase in the synaptic cleft. This breakdown prevents prolonged stimulation of the postsynaptic receptor, allowing for precise and controlled signal transmission. Additionally, after its breakdown, the components of acetylcholine can be recycled for the synthesis of new neurotransmitters, ensuring efficient use of resources.


Why doesn't acetylcholine remain on on the postsynaptic neuron?

Acetylcholine is a neurotransmitter in brain,ganglion's of autonomic nervous system, and at post ganglionic nerve ending of parasympathetic fibers.It is also released at motor end plate. After it's release, in synaptic cleft, it transmits the nerve impulse to next target. Within fewmilliseconds it is destroyed by the enzyme 'acetylcholinesterase'. In case of nor-adrenaline, there is 're-uptake' by neurons.


How separate the sand and camphor by sublimation process?

Sublimation of camphor occur faster by heating and sand remain.


When the summed total of all post synaptic potentials rise above threshold creation of action potentials occur?

When the summed total of all postsynaptic potentials (PSPs) exceeds a certain threshold at the axon hillock of a neuron, it triggers the opening of voltage-gated sodium channels. This influx of sodium ions causes a rapid depolarization of the neuron, leading to the generation of an action potential. If the summed PSPs do not reach this threshold, no action potential will be initiated, and the neuron will remain in its resting state. This process is crucial for the transmission of signals within the nervous system.


What are the unchanged particles?

Unchanged particles are subatomic particles that do not undergo any transformations or reactions during a particular process or interaction. These particles remain the same in terms of their identity, properties, and characteristics throughout the process.

Related Questions

Why does't acetylcholine remain on the postsynaptic neuron?

Acetylcholine does not remain on the postsynaptic neuron because it is rapidly broken down by the enzyme acetylcholinesterase in the synaptic cleft. This breakdown prevents prolonged stimulation of the postsynaptic receptor, allowing for precise and controlled signal transmission. Additionally, after its breakdown, the components of acetylcholine can be recycled for the synthesis of new neurotransmitters, ensuring efficient use of resources.


Why doesn't acetylcholine remain on on the postsynaptic neuron?

Acetylcholine is a neurotransmitter in brain,ganglion's of autonomic nervous system, and at post ganglionic nerve ending of parasympathetic fibers.It is also released at motor end plate. After it's release, in synaptic cleft, it transmits the nerve impulse to next target. Within fewmilliseconds it is destroyed by the enzyme 'acetylcholinesterase'. In case of nor-adrenaline, there is 're-uptake' by neurons.


What is responsible for degrading acetylcholine so that it does not remain in the synapse?

acetylcholinesterase


When two action potentials arrive simultaneously at two different presynaptic terminals that synapse with the same postsynaptic neuron?

When two action potentials arrive simultaneously at different presynaptic terminals synapsing with the same postsynaptic neuron, the postsynaptic neuron may experience a phenomenon known as spatial summation. This occurs when the excitatory postsynaptic potentials (EPSPs) generated by each terminal combine, potentially reaching the threshold for triggering an action potential in the postsynaptic neuron. If the combined effects are sufficient, the postsynaptic neuron will fire an action potential; otherwise, it will remain at its resting potential. This process enhances the likelihood of neuronal activation in response to multiple inputs.


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What would Poisons Such As Botulism That Prevent The Release Of Acetylcholine Would Cause Muscles To Do?

Poisons like botulism inhibit the release of acetylcholine, a neurotransmitter essential for muscle contraction. As a result, muscles would be unable to receive signals to contract, leading to paralysis. This paralysis can affect various muscles, including those involved in breathing, which can be life-threatening. Overall, the affected muscles would remain relaxed and unresponsive.


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