Lesson 8.4.1
8.4.1 Nervous and hormonal control in animals Quiz: Pearson Edexcel Biology A (Salters-Nuffield), Unit 8
20 questions
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Lesson 8.4.1, Nervous and hormonal control in animals: 20 multiple choice questions for the Pearson Edexcel Biology A (Salters-Nuffield) (9BI0), Unit 8: Grey Matter, written with Revision Ninja.
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The 20 questions
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Which statement correctly contrasts nervous and hormonal communication?
- Hormones travel along axons while nerves travel in the blood, which is why hormone signals are so fast
- Both use only electrical signals, so there is no chemical difference between the two forms of communication
- Nervous responses are slow and long lasting, whereas hormonal responses are fast and brief in their effects
- Nervous responses are fast and short lived along neurones; hormonal responses are slower, longer lasting and carried in blood
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Which gland releases adrenaline into the blood?
- Adrenal medulla, which secretes adrenaline in response to nervous stimulation during stress or exercise
- Pituitary gland only, which releases a range of tropic hormones that control other endocrine glands
- Pancreas, which releases insulin and glucagon in response to changes in blood glucose concentration
- Thyroid, which releases thyroxine to control the basal metabolic rate of the body over long periods
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Which gland releases insulin into the blood?
- Adrenal cortex, which releases steroid hormones such as cortisol and aldosterone into the blood
- Ovary, which releases oestrogen and progesterone to regulate the menstrual cycle in females
- Pancreas, through the islets of Langerhans, which contain the beta cells that secrete insulin
- Thyroid gland, which releases thyroxine and controls the metabolic rate of cells in the body
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Which structure in the brain acts as a link between the nervous and endocrine systems?
- Medulla oblongata only, which controls breathing and heart rate but does not influence any gland
- Corpus callosum, which connects the two cerebral hemispheres and passes information between them
- Cerebellum, which co-ordinates balance and the smooth movement of the limbs and the body
- Hypothalamus, which controls the pituitary gland, linking nervous signals to hormone release
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Which gland is controlled directly by the hypothalamus through nerve fibres and hormones?
- Pituitary gland, which is controlled through nerve fibres and releasing hormones from the hypothalamus
- Skin, which is controlled by the hypothalamus only through the sweat glands in the dermis
- Liver, which releases glucose into the blood in response to a direct nervous signal from the medulla
- Kidney only, which is controlled by the hypothalamus only through the production of urine
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Why is hormonal communication described as widespread?
- Hormones travel only through nerve fibres, which spread the signal to every part of the body
- Hormones only act on one specific cell, which means their effects are limited to a single organ
- Hormones cannot leave the bloodstream, so they act only on the cells lining the blood vessels
- Hormones travel in the blood to all cells, but only target cells with the correct receptors respond
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Which statement describes a key feature of a nervous response?
- It uses hormones in the bloodstream, which carry the signal from the brain to the effector
- It is short-lived and targeted to a specific effector, such as a particular muscle or gland
- It takes minutes to begin, because the signal must first be carried by the blood to the target organ
- It is widespread and affects many organs at once, since the nerve impulse spreads through the whole body
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A student records that heart rate increases within 1 second of seeing a danger. Which system is most likely responsible for this rapid change?
- Nervous system, acting through sympathetic nerves to the SAN, which speeds up the heart rate quickly
- Insulin acting on the liver to release glucose, which takes several minutes to change the heart rate
- Thyroid hormone acting over several days to raise the basal metabolic rate of the whole body
- Oestrogen acting on the uterus, which changes the rate of the heart only in the later stages of pregnancy
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Which statement describes the effect of a long-lasting hormonal response?
- It has no effect on metabolism, since hormones act only on the nerves that carry signals to the muscles
- It produces a sustained change, such as growth or metabolic adjustment, over a long period
- It only changes the colour of the skin, which is the only long-lasting effect that hormones have on the body
- It produces an immediate effect that stops in milliseconds, once the hormone is removed from the bloodstream
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Which statement describes the role of the pituitary gland in co-ordinating the endocrine system?
- It secretes insulin into the pancreas, which then acts on the other glands to control their output
- It stores glycogen for the liver, which releases glucose into the blood when the pituitary signals it
- It carries nerve impulses to the muscles, which allows the pituitary to control movement directly
- It secretes hormones that control other endocrine glands, such as the thyroid and adrenal cortex
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Why is the response to adrenaline described as fast but short lived?
- Adrenaline is stored permanently in target cells, which keeps the response going for a long time after release
- Adrenaline is broken down relatively quickly, so its effect falls away once it is no longer released
- Adrenaline cannot enter the blood, so its effect is confined to the gland that produces it
- Adrenaline causes permanent changes to nerve cells, which then continue to respond long after the hormone has gone
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A student compares the two systems. Which feature is shared by nervous and hormonal control?
- Both are restricted to the head, where the brain and the pituitary gland are the main control centres
- Both use chemical or electrical signals to co-ordinate responses in the body
- Both act only on the skin, which is the only organ that responds to nervous and hormonal signals
- Both use electrical impulses along axons, which is why both systems can carry signals over long distances
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A scientist removes a gland and observes that blood glucose rises after a meal. Which gland is most likely removed?
- Adrenal medulla, which secretes adrenaline and is responsible for raising blood glucose during stress
- Salivary glands, which secrete digestive enzymes into the mouth and have a role in the uptake of glucose
- Pituitary gland only, which is the gland that controls the uptake of glucose into all body cells
- Pancreas, since without it insulin is not secreted, so blood glucose is not lowered after a meal
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Which feature of a hormone allows it to affect only certain cells?
- It is always stored in the nucleus, which means only the cell nucleus can respond to the hormone signal
- It is destroyed by the target cell, which means only the cells that destroy it can be affected by it
- It is able to pass through the cell walls of all plant cells, which limits its effect to plant tissues
- The target cell has a specific receptor that binds the hormone, so only those cells respond
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Which pair correctly matches a control system with a feature?
- Hormonal: fast and short lived, since the signal travels along the axons of the nerves
- Hormonal: transmitted along axons, which carry chemical messengers directly to the target cells
- Nervous: rapid, localised, electrical, since the signal travels along neurones to a specific effector
- Nervous: slow and long lasting, since the signal travels through the blood to reach its target
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Which evaluation is most appropriate for the claim that hormones always act faster than nerves?
- Incorrect, because nerve impulses are typically faster than hormonal responses, which travel in the blood
- Correct, because nerves never produce any response that is fast enough to be measured in the body
- Incorrect, because hormones never leave the gland, so they cannot act on any target cell at all
- Correct, because hormones are always faster, since chemical signals move more quickly than electrical impulses
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A patient has lower than normal levels of a hormone produced by the thyroid gland. Which symptom would be most consistent with this?
- Increased heart rate in response to danger, since the thyroid gland controls the adrenaline response
- Immediate contraction of all skeletal muscles, since the thyroid gland controls the motor neurones directly
- Increased metabolic rate and weight loss, since thyroid hormones are normally reduced by the body's own feedback
- Reduced metabolic rate and tiredness, since thyroid hormones normally raise the basal metabolic rate
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Which statement describes how nerve and hormonal systems can co-operate in a single response?
- Hormones stop nerve impulses in all cases, which is why the two systems are described as opposing controllers
- A nerve stimulus can cause hormone release, which then produces a longer-lasting response
- Nerves produce hormones in the myelin sheath, which then acts on the target organ in the same response
- Nerves and hormones never act together, since each system controls a different set of organs in the body
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Which of these is a correct example of a hormone acting on target cells over a long period?
- Thyroxine controlling the basal metabolic rate, which acts over a long period in many tissues
- Adrenaline during a sudden fright, which acts for only a few seconds in the body
- Acetylcholine at a neuromuscular junction, which acts for a fraction of a second at each synapse
- Noradrenaline at a synapse in the brain, which acts within milliseconds of its release
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Which evaluation is best for an experiment that removes the pituitary gland and then measures the response of other endocrine glands?
- The experiment shows that the pituitary has no role in endocrine control, since removing it changed nothing
- The experiment shows the pituitary is made of nerve cells, since removing it altered the response of the glands
- The experiment proves that the nervous system is the only controller of the endocrine glands in the body
- The experiment could show the pituitary is needed to stimulate other glands, but a control group would be needed to confirm this
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