neurons structure and function g.burgess. neuron specialized cells that send electric signals as...
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NeuronsNeurons
Structure and Function
G.Burgess
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NeuronNeuron• Specialized cells that send electric signals as impulses through the body.
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NeuronNeuron
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NeuronNeuronDendrites: receptor site for stimulus from
axon.
Axon: myelinated branch that leads the neural impulse away from the cell body.
Cell body: location for all metabolic processes
Myelin Sheath: insulating layers of lipid material that allow a stimulus to move quickly through the axon
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Node: also called the Node of Ranvier, a space found between the myelin
sheathes on the axon
End brush: the branches off the axon that send a stimulus to a dendrite.
NeuronNeuron
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Myelin Sheath•Acts as an insulator for the axon to allow neural impulses to move quickly from the cell body along the axon to the next dendrite.
•Made from many layers of membrane from Schwann cells. These are neural cells that help the axon to receive nutrients and to regenerate.
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Myelin Sheath•Between the Myelin sheaths are spaces where the axon is not protected called nodes of Ranvier.
•Axons that are not protected by myelin and do not have nodes of Ranvier send impulses slower than those that are covered.
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Resting PotentialResting PotentialThe normal unstimulated
membrane potential of a neuron at rest.
**Potential refers to the voltage or difference in the electrical charge of the cell. Stored energy that can be released to do work.
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Resting PotentialResting PotentialNeurons at rest are polarized. The region outside the neuron has a charge opposite to the charge in side the cell.
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ _ _ _ _ _ _ _ _ _ _ _ _ _
_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ _ _ _ _ _ _ _ _ _ _ _ _ _
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
+ + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + + +
Outside
Inside
NaNa++
Na+
K+
KK++
**Sodium has a more positive charge than potassium.
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What causes neurons to beWhat causes neurons to bePolarizedPolarized??
Factors:
1. Differences in concentration of K and Na ions.
-Outside; concentration of Na > K ions
-inside; concentration of Na <K ions
**As a result there is a more positive charge outside the cell than inside the cell. This is caused by the sodium - potassium pump.
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What causesWhat causesPolarizationPolarization??
Factors:
2. Potassium ions are able to diffuse through the cell membrane.
3. There are many large negatively charged ions in the cell that are not able to pass through the cell membrane.
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What is the Sodium - What is the Sodium - Potassium PumpPotassium Pump
A Type of active transport protein that enables the movement of Na and K in and out of the cell.
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How does the How does the sodium potassium sodium potassium
pump work?pump work?1. When gate is open inside the cell,
potassium ions are released and sodium ions are captured.
2. When the gate is opened to the out side of the cell, sodium ions are released and potassium ions are captured.
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Action PotentialAction Potential is another name for impulse or electrical charge that moves through the neuron
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Action PotentialAction PotentialWhat is needed for an impulse to move
quickly?Myelin sheaths accompanied by nodes of Ranvier
OR
if the neuron does not have any myelin or nodes of Ranvier
axon with a large diameter
ie. squid, earthworm
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Types of NeuronsTypes of Neurons1. Sensory neurons: transmit impulses from receptors in sensory organs to the brain
2. Motor neurons: sends impulse from the brain to the muscles
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Types of NeuronsTypes of Neurons3.Interneurons: send impulses from sensory neurons to motor neurons.
Groups of neurons that function together are called
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What is a nerve What is a nerve impulse?impulse?
An impulse is an electric charge that passes along a cell.
The nerve impulse, also called The nerve impulse, also called action potentialaction potential, moves from , moves from dendrite to cell, body, to axon, to dendrite to cell, body, to axon, to dendrite, to cell body, to axon and dendrite, to cell body, to axon and so on.so on.