Lesson 3.6.1.2.1
3.6.1.2.1 Receptors and the Pacinian corpuscle Quiz: AQA Biology, Unit 6
20 questions
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Lesson 3.6.1.2.1, Receptors and the Pacinian corpuscle: 20 multiple choice questions for the AQA Biology (7402), Unit 6: Organisms respond to changes in their internal and external environments, written with Revision Ninja.
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The 20 questions
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Which is a property of receptors according to the specification?
- They produce hormones directly
- They respond to every type of stimulus equally
- They respond only to specific stimuli
- They are found only in the brain
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What is produced in a Pacinian corpuscle when stimulated?
- A lactate molecule
- A generator potential
- A synaptic vesicle
- A chloroplast
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Where are Pacinian corpuscles found in the human body?
- In the retina
- In the lungs
- In the stomach wall
- In the skin
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What structure in a Pacinian corpuscle is deformed by pressure?
- Layers of connective tissue surrounding the sensory neurone ending
- The retina of the eye
- The synapse at the neuromuscular junction
- The chloroplast membranes
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What happens when stretch-mediated sodium ion channels in a Pacinian corpuscle are deformed?
- Acetylcholine is released into a synapse
- Oxygen is released from the membrane
- Potassium ions leave and the cell hyperpolarises
- Sodium ions enter and a generator potential is established
-
Rods and cones differ in their sensitivity to light. Which statement is correct?
- Rods detect colour and cones detect dim light
- Cones are more sensitive to dim light than rods
- Rods are more sensitive to dim light, while cones are needed for colour vision
- Rods and cones are equally sensitive to all light levels
-
Why do rods give high sensitivity but low visual acuity?
- Many rods connect to one neurone in the optic nerve, so signals are summed but fine detail is lost
- Rods have many more pigments than cones
- Rods are connected to individual neurones with one-to-one contact
- Rods contain chloroplasts that amplify light
-
Why does colour vision depend on cones rather than rods?
- Cones are found only in the optic nerve
- Cones contain more light-sensitive pigment than rods
- Cones contain different optical pigments that respond to different wavelengths of light
- Cones respond only to dim light
-
A Pacinian corpuscle does not respond to a constant steady pressure once it has been applied for some time. What explains this?
- The corpuscle loses its sodium ions permanently
- Pressure stops the corpuscle from having a resting potential
- Deformation must change for sodium channels to keep producing generator potentials
- Pressure causes the corpuscle to release acetylcholine
-
Which best describes the link between stimulus strength and generator potential in a Pacinian corpuscle?
- Stimulus strength has no effect on the generator potential
- A greater deformation produces a larger generator potential
- A greater deformation produces a smaller generator potential
- Generator potentials are the same size for all stimuli
-
What is the main difference between a generator potential and an action potential?
- A generator potential is graded in size, whereas an action potential is all-or-nothing
- A generator potential is always larger than an action potential
- Action potentials occur only in receptors, and generator potentials only in neurones
- An action potential is graded in size, whereas a generator potential is all-or-nothing
-
A night-time scene appears only in shades of grey. Which explanation is most accurate?
- The optic nerve is blocked at night
- Only rods are active in dim light, and rods contain one type of optical pigment
- Rods have a higher visual acuity than cones at night
- Cones are active in dim light and detect only grey
-
Why does the fovea have higher visual acuity than the periphery of the retina?
- The fovea contains many more rods than the periphery
- The fovea does not contain any cones
- Cones in the fovea have fewer neurones connecting them to the brain, so fine detail is preserved
- The fovea is connected to many rods that sum their signals
-
Two points touched at the same time on the fingertip can be distinguished, but the same two points on the back cannot. Which concept is illustrated?
- Generator potential frequency
- Synaptic summation
- Habituation of touch receptors
- Resolution of touch receptors
-
Habituation of touch receptors is best described as:
- The loss of the sodium pump during repeated stimulation
- A change in colour sensitivity of the receptor
- An increase in response when a stimulus is repeated many times
- A decrease in response when a stimulus is repeated many times
-
A receptor produces a generator potential below the threshold for an action potential. What happens?
- The generator potential is converted into a synapse
- An action potential is produced at a lower size
- No action potential is produced, although the generator potential may still be present
- The receptor is destroyed by the stimulus
-
Explain why a Pacinian corpuscle can detect pressure but not temperature. Which statement is most accurate?
- It responds to all stimuli because it has many membranes
- It contains heat-sensitive proteins that respond only to pressure
- It is connected to the eye and so responds to light
- Its sodium channels respond to deformation, so it is specific to mechanical stimuli
-
Which statement describes receptor specificity in the retina?
- Rods respond to sound, and cones respond to touch
- Cones respond to temperature and rods respond to chemicals
- Rods respond to light and cones respond to colour, so each receptor type has its own role
- Rods and cones respond equally to all stimuli
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What is the role of the layers of connective tissue in a Pacinian corpuscle?
- They make the corpuscle sensitive to light
- They absorb sodium ions from the surroundings
- They transmit pressure to the sensory neurone ending, deforming its membrane
- They produce neurotransmitter for a synapse
-
Which feature makes rods suitable for detecting movement in dim light?
- Large numbers of mitochondria in each rod
- A direct one-to-one connection to the brain for each rod
- Colour pigments that respond to movement
- High sensitivity, because signals from many rods are summed onto one neurone
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