<u> Per agency policy, putting up the </u><u>side rails</u><u> on the bed is the most important action to be taken by the nurse before leaving the room for a dose of </u><u>diazepam</u><u>.</u>
Diazepam -
- Diazepam is a sedative-hypnotic with skeletal muscle relaxant and anticonvulsant effects.
- Before leaving the patient's room, the nurse should put safety precautions in place to protect the patient from harm.
- Lethargy, drowsiness, and dizziness are this medication's most frequent side effects.
What is the purpose of side rails on the beds in the resident's room?
- Assisting in turning and shifting positions inside the bed. offering a handhold to help people get into or out of bed.
- Giving a sense of security and comfort. lowering the chance that patients will suddenly get out of bed while being transported
When should side rails be used on a bed?
In order to lessen the risk of falling from the bed, let the user adjust their position in the bed, or help the user get in or out of the bed, these rails are utilized on beds made for consumers.
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Answer:
The correct answer will be:
1. Acetylcholine binds to receptors on the motor end plate
2. Chemically-regulated ion channels open, causing depolarization
3 End plate potentials trigger action potential(s).
4. Transverse tubules convey potentials into the interior of the cell
5. Ca++ is released from the sarcoplasmic reticulum
6. Ca++ binds to troponin, pulling on tropomyosin
7. Binding sites on actin are uncovered, allowing myosin to bind and carry out power strokes
8. Force increases.
9. Ca++ is pumped (re-sequestered) into the sarcoplasmic reticulum
10. Force decreases.
Explanation:
The muscle contraction is a highly controlled mechanism which begins at the neuromuscular junction with the release of the acetylcholine neurotransmitter. This neurotransmitter causes the depolarization of the membrane by binding to the receptors of the motor end plate which generates an action potential. This action potential is transmitted via T-tubules from sarcolemma to the sarcoplasmic reticulum.
The sarcoplasmic reticulum releases calcium ions which binds to the troponin protein. This troponin removes the protein tropomyosin from the actin causing the rotation of the tropomyosin exposing the binding sites for myosin. The myosin binds to the actin using energy from the ATP which pulls the actin causing contraction. Another ATP binds the myosin head which weakens the bond between myosin and actin which releases the myosin which decreases the force between them decreases and the muscles relax.
Answer:
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Explanation:
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