Lesson 3.1.1
3.1.1 Neurons, neurotransmitters and recreational drugs Quiz: Pearson Edexcel Psychology, Unit 3
20 questions
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Lesson 3.1.1, Neurons, neurotransmitters and recreational drugs: 20 multiple choice questions for the Pearson Edexcel Psychology (9PS0), Unit 3: Biological psychology, written with Revision Ninja.
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The 20 questions
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What is the role of a neuron?
- To produce hormones that circulate in the blood and change behaviour over several hours
- To carry electrical and chemical signals through the nervous system to other neurons or muscles
- To store long-term memories as stable chemical structures inside the cell body for life
- To provide physical support and insulation to the brain without transmitting any signals at all
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Which part of a neuron receives incoming signals from other neurons?
- The dendrites
- The myelin sheath
- The axon terminal buttons
- The nucleus of the cell body only
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What is the function of the myelin sheath?
- It insulates the axon and speeds up the transmission of the electrical impulse along it
- It stores the genetic information of the neuron in a form that can be copied during cell division
- It receives chemical signals from other neurons through receptors on its outer surface
- It releases neurotransmitters into the synaptic cleft to pass signals to the next neuron
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Which chemical messengers are released at the synapse to pass a signal to the next neuron?
- Antibodies released by the immune system to fight infection in the nervous tissue
- Enzymes that break down the cell membrane of the neuron during a signal
- Neurotransmitters
- Hormones carried in the bloodstream to distant organs of the body
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What is the synaptic cleft?
- The fatty insulating layer that surrounds the axon and speeds up the electrical impulse along it
- The small gap between the terminal button of one neuron and the receptor site of the next
- The part of the brain where memories are stored in the form of stable chemical patterns over time
- The long fibre that carries impulses away from the cell body of a neuron towards its target
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Which sequence correctly describes synaptic transmission?
- Neurotransmitters are released into the cleft, the electrical impulse reaches the terminal, they bind to the receptors
- Electrical impulse reaches the myelin sheath, the sheath releases neurotransmitters, they are reabsorbed by the cell body
- Neurotransmitters bind to receptors, then the electrical impulse is produced in the cleft, then it reaches the terminal
- Electrical impulse reaches the terminal button, neurotransmitters are released into the cleft, they bind to receptors on the next neuron
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What is the function of the axon?
- To carry the electrical impulse away from the cell body towards the terminal buttons
- To store neurotransmitters in vesicles until the cell body requests their release in a chemical reaction
- To insulate the neuron from the surrounding chemicals in the body, without carrying any impulses at all
- To receive incoming signals from other neurons, which are then passed to the cell body for processing
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Which neurotransmitter is involved in reward and motivation pathways in the brain?
- Adrenaline, which is mainly involved in the body's response to stress as a hormone in the blood
- Dopamine
- Cortisol, which is mainly involved in the body's long-term response to stress as a steroid hormone
- Acetylcholine, which is mainly involved in the control of the muscles at the neuromuscular junction
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Which neurotransmitter is mainly involved in mood regulation and sleep?
- Adrenaline, which is mainly a hormone that acts on the heart and blood vessels during stress
- Glutamate, which is the main excitatory neurotransmitter but is not linked to sleep or mood
- Insulin, which is a hormone that regulates blood sugar levels after meals in the body
- Serotonin
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What does the 'all-or-none' law describe for a neuron?
- A neuron either fires a full action potential or does not fire at all, once a threshold is reached
- A neuron fires a gradually weaker impulse as it travels down the axon, reaching zero at the terminal
- A neuron fires a stronger impulse for every stimulus, with no threshold below which it stays silent
- A neuron fires only when it receives a chemical signal from a hormone circulating in the blood nearby
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Which neurotransmitter is inhibitory in most of the brain, reducing the activity of neurons?
- Dopamine, which is excitatory in most reward pathways and increases the firing of target neurons
- Glutamate, which is the main excitatory neurotransmitter and increases the firing of neurons in the brain
- Acetylcholine, which is excitatory at the neuromuscular junction and increases the contraction of muscles
- GABA
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How is a neurotransmitter removed from the synaptic cleft after it has acted?
- It is released into the bloodstream, where it circulates until it is used by a distant organ of the body
- It stays in the cleft indefinitely, since neurotransmitters cannot be removed once they have been released at all
- It is reabsorbed by the presynaptic neuron through reuptake, or broken down by enzymes in the cleft
- It is absorbed directly into the myelin sheath, where it is stored for later use by the neuron
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Which description best matches an excitatory neurotransmitter?
- It makes the myelin sheath thicker, so the impulse travels more slowly along the axon in the neuron
- It makes the post-synaptic neuron more likely to fire an action potential
- It makes the post-synaptic neuron less likely to fire, so it reduces the activity of the target neuron
- It makes the terminal button smaller, so fewer neurotransmitters are released at the synapse in total
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Why is the synapse important for behaviour?
- It prevents all signals from passing between neurons, so each neuron works in complete isolation at all times
- It makes the neuron larger, so that more electrical impulses can be stored in the cell body for later use
- It allows signals to pass between neurons, so information can be integrated in neural networks
- It produces the hormones that control the heart rate, so the body can respond to stress rapidly
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A researcher finds that a drug blocks the reuptake of serotonin. What would be the likely effect?
- Serotonin would be released into the bloodstream, where it would have no effect on neurons in the brain
- Serotonin would be moved into the myelin sheath, where it would be stored and not used for signalling again
- Serotonin would remain in the synaptic cleft for longer, prolonging its effect on the post-synaptic receptors
- Serotonin would be destroyed immediately, so no serotonin would be available to bind to any receptors at all
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Which evaluation point is most relevant to research on neurotransmitters?
- Research on neurotransmitters can only be done after death, so it cannot inform understanding of living people
- Research on neurotransmitters always uses controlled experiments on humans, so all conclusions are fully causal
- Research on neurotransmitters has never been tested, so it has no scientific basis at all in the literature
- Much research is correlational or uses animal models, so causal conclusions about humans are limited
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What is the approximate speed at which a neuron's signal travels along a myelinated axon compared with an unmyelinated one?
- Myelination has no effect on speed, since the impulse travels at the same rate along all axons in the body
- Myelination makes it faster only for chemical signals, which do not travel along the axon in the first place
- Myelination makes it slower, because the myelin acts as a barrier that stops the impulse from moving at all
- Myelination makes it much faster, because the impulse jumps between gaps in the myelin
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Which idea about neurotransmitters is consistent with the specification?
- The structure and role of the neuron and the function of neurotransmitters are central to human behaviour
- Neurotransmitters have no role in human behaviour, so the topic is irrelevant to the study of psychology at A level
- Neurotransmitters are only found in the muscles, so they cannot affect behaviour driven by the brain at all
- Neurotransmitters are only found in the blood, so they cannot affect the brain or the nervous system at all
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What is the main role of the terminal buttons of a neuron?
- To insulate the axon with myelin, which speeds the electrical impulse along the fibre to the next neuron
- To release neurotransmitters into the synaptic cleft when an electrical impulse arrives
- To receive incoming neurotransmitters from the cleft through their large dendritic branches at the cell body
- To store the genetic code of the neuron, which is copied when the neuron divides to form new cells
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Which neurotransmitter is linked to arousal, attention and the fight-or-flight response?
- Glutamate, which is the main excitatory neurotransmitter in the brain but is not linked to arousal
- Acetylcholine, which is mainly involved in the control of muscle contraction at the neuromuscular junction
- GABA, which is the main inhibitory neurotransmitter in the brain and reduces neuron firing
- Noradrenaline
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