1. What is a sensation?
A feeling caused by a stimulus
Explanation
A sensation is the subjective feeling produced when a stimulus is detected. A motor response involves movement rather than the conscious experience caused by sensory input.
A feeling caused by a stimulus
Explanation
A sensation is the subjective feeling produced when a stimulus is detected. A motor response involves movement rather than the conscious experience caused by sensory input.
Somatic: skin, muscles, and joints; visceral: viscera and visceral functions; organic: hunger, thirst, and sex; special: hearing, smell, taste, vision, and equilibrium
Explanation
The four groups are distinguished by their sources and functions: somatic, visceral, organic, and special sensations have the pairings described in the correct choice. The most plausible alternative confuses somatic sources with visceral sources and places special senses in the wrong category.
It arises from somatic structures, travels through somatic nerves, and is perceived in the cerebral cortex
Explanation
Somatic sensations originate in somatic structures, are conducted by somatic nerves, and reach conscious perception in the cerebral cortex. The visceral alternative describes a different sensory source and does not define somatic sensation.
Mechanoreceptive, thermoreceptive, and pain sensations
Explanation
Somatic sensation includes mechanoreceptive, thermoreceptive, and pain sensations. Visceral, organic, and special sensations are categories of sensation rather than the three major somatic types.
A proprioceptive sensation
Explanation
Proprioceptive sensations arise from deep receptors and provide information about body position and movement. Exteroreceptive sensations arise from cutaneous receptors and include touch, pain, and temperature.
They are divided into cutaneous sensations from skin receptors and deep sensations from receptors in deeper tissues
Explanation
Mechanoreceptive sensations are detected by mechanoreceptors and classified as cutaneous or deep according to receptor location. The visceral and special categories concern different sensory classifications rather than mechanoreceptor location.
Merkel discs and Ruffini corpuscles are expanded endings
Explanation
Merkel discs and Ruffini corpuscles are expanded endings among the cutaneous mechanoreceptors. Pacinian and Meissner corpuscles are encapsulated endings, while free nerve endings and hair-follicle basket endings belong to other groups.
The muscle spindle detects stretch in the fleshy part of skeletal muscle, whereas the Golgi tendon organ detects tension in tendons
Explanation
The muscle spindle is a stretch receptor within the fleshy part of skeletal muscle, while the Golgi tendon organ is a tension receptor in skeletal muscle tendons. The reversed comparison assigns each receptor’s function to the other structure.
Crude touch is poorly localized, whereas fine touch is highly localized and identifies stimulus characteristics.
Explanation
Crude touch has limited localization and requires stronger stimulation, while fine touch provides precise localization and detects stimulus number and characteristics. The second option reverses these properties, which is the central distinction being tested.
Perceiving two simultaneous stimuli as separate points with the eyes closed.
Explanation
Tactile discrimination is the ability to perceive two simultaneously applied stimuli as two distinct points without vision. Identifying the position of one stimulus describes tactile localization, not tactile discrimination.
About 1 mm at the tongue tip, 3 mm at the fingertips, and 70 mm on the back.
Explanation
The shortest two-point threshold is about 1 mm at the tongue tip, 3 mm at the fingertips, and 70 mm on the back, shoulders, and thighs. The other patterns assign the regional thresholds to the wrong body areas.
Stereognosis, which depends on previous learning and experience.
Explanation
Stereognosis is the ability to recognize an object without vision, and it relies on prior learning and experience. Tactile discrimination instead concerns distinguishing two simultaneous points, not recognizing an object as a whole.
It is produced by several mechanoreceptors in subcutaneous tissues and requires more energy.
Explanation
Pressure is a mechanoreceptive sensation produced by several mechanoreceptors in subcutaneous tissues and requires more energy than touch. Repetitive receptor stimulation describes vibration, while joint receptors are associated with kinesthesia.
Meissner corpuscles respond up to about 80 cycles per second, whereas Pacinian corpuscles respond up to 500–800.
Explanation
Vibration results from repetitive mechanoreceptor stimulation, with Meissner corpuscles responding up to about 80 cycles per second and Pacinian corpuscles up to 500–800. The second option reverses the characteristic frequency ranges of the two receptors.
Sense of body position and sense of joint movement.
Explanation
Kinesthetic sensation includes awareness of position and awareness of joint movement. Pressure, itch, tactile discrimination, and vibration are distinct sensory modalities rather than the two components of kinesthesia.
A desire to scratch, often triggered by skin irritation or substances such as histamine.
Explanation
Itch is a skin-irritation sensation that creates a desire to scratch and can be caused by moving tactile stimulation or histamine. Involuntary laughter is associated with tickling, whereas the other choices describe stereognosis and tactile discrimination.
Specialized free nerve endings transmit it through slowly conducting type C fibers, and signals may enter the ventral spinothalamic tract.
Explanation
Itch is detected by highly sensitive, rapidly adapting free nerve endings and travels through slowly conducting type C fibers, potentially via the ventral spinothalamic tract. Fine touch uses discriminative sensory pathways, while Pacinian and Ruffini receptors are associated with other mechanosensory functions.
Different temperatures ranging from freezing to burning
Explanation
Thermoreceptive sensation refers to perceiving temperature differences across a range from freezing to burning. Pressure, vibration, and texture are conveyed by other sensory systems rather than defining thermal sensation.
Cold spots outnumber warm spots by roughly three to ten times
Explanation
Cold spots are found in greater numbers than warm spots, by about three to ten times, while insensitive areas lack functional cold and warm spots. The alternatives reverse this ratio or mischaracterize insensitive areas.
20–25°C
Explanation
Cold receptors discharge across approximately 10–35°C and reach their highest activity around 20–25°C. A peak near 37°C instead characterizes warm receptors, not cold receptors.
It reaches maximal discharge and conducts impulses through C fibers
Explanation
Warm receptors have maximal discharge near 37°C and transmit impulses through C fibers. Krause end bulbs are associated with cold receptors, while pressure-sensitive endings do not define warm-receptor conduction.
They usually contain three neuron orders, with perception in the opposite cerebral cortex
Explanation
Sensory pathways generally use three orders of neurons, and the resulting sensations are perceived contralaterally in the cerebral cortex. The receptors remain on the stimulated, ipsilateral body side, but perception occurs on the opposite cortical side.
Gracile tract—lower body; cuneate tract—upper body
Explanation
The gracile tract carries sensory information from the lower body, whereas the cuneate tract carries information from the upper body. The reversed pairing confuses the two tracts, and the other pairings assign them unsupported regions.
Vibration sensation
Explanation
The gracile and cuneate tracts convey vibration along with tactile localization, discrimination, stereognosis, weight discrimination, and kinesthesia. Temperature, pain, and itch are associated with the spinothalamic system described separately.
Crude touch, pressure, pain, temperature, tickle, itch, and sexual sensations
Explanation
Together, the lateral and ventral spinothalamic tracts form the spinal lemniscus and carry crude touch, pressure, pain, temperature, tickle, itch, and sexual sensations. The second group belongs to the gracile and cuneate tracts, while the remaining groups are not their listed functions.
Memorize the answers with 53 flashcards on Sensory Physiology.
What is sensation?
A feeling caused by a stimulus.
From which body parts do somatic sensations arise?
Skin, muscles, and joints.
What type of sensations come from painful viscera, micturition, and defecation?
Visceral sensations.
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