Lesson 3.2.3.2.1
3.2.3.2.1 Sensory, relay and motor neurons; synaptic transmission Quiz: AQA Psychology, Unit 7
20 questions
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Lesson 3.2.3.2.1, Sensory, relay and motor neurons; synaptic transmission: 20 multiple choice questions for the AQA GCSE Psychology (8182), Unit 7: Brain and neuropsychology, written with Revision Ninja.
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The 20 questions
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Which neuron carries messages from receptors towards the central nervous system?
- Motor neurons, which carry messages from the central nervous system outwards to muscles
- Relay neurons, which carry messages only between two neurons inside the same muscle fibre
- Sensory neurons, which carry information from receptors such as the eyes and skin inwards
- Glial cells, which carry electrical messages from the eyes to the brain along the optic nerve
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What is the role of relay neurons?
- They connect sensory and motor neurons within the central nervous system, passing messages between them
- They carry messages from the central nervous system to the glands in the skin and digestive system
- They carry messages from receptors in the eyes and ears to the spinal cord
- They carry messages from muscles to the skin, so that touch can be felt
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What is the role of motor neurons?
- They carry messages only between relay neurons inside the brain, never reaching the body
- They carry messages from the central nervous system to muscles and glands, causing them to respond
- They store information in the brain so that memories can be recalled later in life
- They carry messages from receptors in the skin to the spinal cord, so touch is felt
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What happens at a synapse?
- A hormone is released into the blood and carried to every cell in the nervous system
- A protein is destroyed inside the nucleus so the message cannot be passed on
- A neurotransmitter is released into the gap and binds to receptors on the next neuron
- An electrical current jumps directly into the next cell without any chemical release in daily life
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What is reuptake?
- The release of a neurotransmitter from a sensory neuron into the spinal cord at the start of a message
- The reabsorption of neurotransmitter back into the neuron that released it, after it has acted
- The production of new neurons in the brain after a head injury, over several weeks
- The movement of ions across the membrane of a motor neuron during a rest period
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Which drug would most likely increase the amount of neurotransmitter in a synapse?
- A drug that blocks reuptake, so the neurotransmitter stays in the synapse for longer
- A drug that destroys all receptors on the next neuron, so there is no binding site
- A drug that increases reuptake, so neurotransmitter is cleared from the synapse more quickly
- A drug that stops the neuron firing, so no neurotransmitter is released at all
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Which term describes a signal that makes a neuron more likely to fire?
- Excitation, which increases the likelihood that the next neuron generates a message
- Inhibition, which decreases the likelihood that the next neuron generates a message
- Myelination, which insulates the axon so messages travel faster along its length
- Reuptake, which removes neurotransmitter so the next neuron is less likely to fire
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Which term describes a signal that makes a neuron less likely to fire?
- Summation, which adds signals from many neurons into one large electrical response
- Excitation, which increases the likelihood that the next neuron generates its own message
- Inhibition, which reduces the likelihood that the next neuron generates its own message
- A reflex, a fast automatic response that bypasses the brain between receptor and muscle
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Why does the nervous system need both excitation and inhibition?
- Inhibition alone would be enough, since excitation only causes messages to be lost in that setting
- Excitation alone would be enough, and inhibition is needed only in people with spinal damage
- Balancing the two lets the system produce precise responses rather than firing everywhere at once
- Neither is needed, since every neuron fires at the same rate whatever it receives
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Which part of a neuron receives messages from other neurons?
- The myelin sheath, which insulates the axon so messages travel more quickly along it
- The nucleus, which stores the genetic code and controls protein production for the cell
- The axon terminals, which release neurotransmitter into the synapse to signal the next neuron
- The dendrites, which branch from the cell body and collect signals from other neurons
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Which sequence correctly shows the path of a message in a reflex arc?
- Effector, motor neuron, relay neuron, sensory neuron, receptor
- Receptor, sensory neuron, relay neuron, motor neuron, effector
- Receptor, motor neuron, relay neuron, sensory neuron, effector
- Relay neuron, receptor, sensory neuron, effector, motor neuron
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Which is the most accurate description of a neurotransmitter?
- A type of muscle cell that contracts when a motor neuron releases an electrical message
- A structure in the cell body that stores genetic information used to produce new neurons
- An electrical signal that travels along a single neuron without leaving the cell at any point
- A chemical messenger released from one neuron that acts on receptors on the next neuron across a synapse
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A person's muscle does not contract after a motor neuron fires. Which step is most likely disrupted?
- The myelin sheath of the sensory neuron, which only affects the speed of messages on the skin
- The sensory neuron's dendrites, which cannot receive signals from the skin or eyes
- Neurotransmitter release or its binding to receptors at the junction with the muscle
- The cerebellum, which is the only part of the brain that can cause a muscle to contract
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What is the function of the myelin sheath?
- It releases neurotransmitter into the synapse so the message can cross the gap
- It insulates the axon, helping electrical messages travel faster along the neuron
- It receives messages from other neurons and passes them through the cell body in daily life
- It stores genetic information that controls how the neuron grows
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Why is the all-or-none nature of neuron firing useful for the nervous system?
- A neuron can fire at any strength from zero to maximum, so messages vary greatly
- A neuron fires only when the body is asleep, so messages are sent during rest and not activity
- A neuron either fires fully or not at all, so messages have consistent strength when they arrive
- A neuron fires continuously, so messages never stop and the body is always active
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Which statement best describes how a synapse allows one-way transmission?
- Receptors are on both neurons, so the message is returned to the first cell after each transmission
- Electrical current flows equally both ways across the gap, so messages travel back and forth
- Neurotransmitter is released from both neurons, so messages can travel in either direction
- Neurotransmitter is released only from the presynaptic neuron, and receptors are only on the postsynaptic neuron
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What is a receptor on a neuron in a synapse?
- A nucleus within a neuron that stores the message until a muscle needs it
- A region of the spinal cord that receives all messages from the skin before the brain
- A protein on the next neuron's membrane that binds a neurotransmitter and triggers a response
- A gap that carries electrical current from the axon of one neuron to the dendrite of the next
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A drug blocks inhibitory neurotransmitter receptors. What would be the most likely effect?
- Inhibition would be reduced, so the next neuron would be more likely to fire
- Reuptake would increase, so neurotransmitter would be cleared from the synapse faster
- Excitation would be reduced, so the next neuron would be much less likely to fire
- Myelin would be destroyed, so messages would slow down along every axon in the body
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Which type of neuron is most common in the brain and spinal cord?
- Mirror neurons, which copy movements seen in others and form the largest group in the spinal cord
- Sensory neurons, which carry messages from receptors and are most common in the central system
- Motor neurons, which carry messages to muscles and glands and are most common inside the brain
- Relay neurons, which connect other neurons within the central nervous system
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Which statement about summation is correct?
- Each small signal must fire separately, and signals are never combined at the neuron in daily life
- Summation removes signals from the neuron, so each message is cancelled before the next
- Summation occurs only in sensory neurons, which can add signals from the skin but not the brain
- Multiple small signals can add together at a neuron, so the total is enough to trigger a message
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