b) You are having a shower with warm water, and all of a sudden, the water turns ice cold! How do you think your temperature sensory neurons code this very noticeable and strong stimulus?
Anatomy and Physiology of Special Sensory Organs
Sensory organs can be labeled as special sensory structures that permit sight, hearing, odor, and flavor. Sensory structures permitting proprioception, touch, thermal, and pain perception can be classified as more advanced sensory organs. The sensory neurons are trained to find out modifications in the external and internal conditions so that a person's body can react to that change. A stimulus is the first signal that is recognized by any sensory receptor of the body. Stimulus is an impulse generated when there is a change in the surroundings of a person. For example, a heated environment will alert the brain through the thermal sensory organs and generate a reflex accordingly.
Sensory Receptors
The human sensory system is one of the most complex and highly evolved structures, which processes a myriad of incoming messages. This well-coordinated system helps an organism or individual to respond to external stimuli, appropriately. The sensory receptors are an important part of the sensory system. These receptors are specialized epidermal cells that respond to external environmental stimuli. These receptors consist of structural and support cells that form the peripheral unit of the receptor and the neural dendrites which receive and detect the external stimuli.
![b) You are having a shower with warm water, and all of a sudden, the water turns ice cold! How
do you think your temperature sensory neurons code this very noticeable and strong stimulus?
a) They produce larger EPSPS at the same rate as under the warm water condition.
b) They produce larger, but the same number of, action potentials as under the warm water
condition.
c) They produce smaller EPSPS at a higher rate than under the warm water condition.
d) They produce the same number and size action potentials that travel faster down the neurons
than under the warm water condition.
e) They produce more action potentials of the same size as under the warm water condition](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F185a6d3e-7a1a-4dc9-a66c-aea1ec9fb760%2F915284bc-94ae-43de-8981-a85b838c3936%2Fvoh7am7_processed.jpeg&w=3840&q=75)
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