Answer:
The most important action for the nurse to take to facilitate rehabilitation with eating for a client who is experiencing total hemiplegia of the dominant right side following a cerebrovascular accident is to assess the client's swallowing function. This is important because individuals with hemiplegia often have difficulty swallowing, which can lead to malnutrition and other complications. The nurse can assess the client's swallowing function by performing a swallowing evaluation, which typically involves observing the client while they eat and drink to identify any problems with swallowing. Based on the results of the evaluation, the nurse can recommend appropriate interventions to improve the client's swallowing function and ensure that they are able to eat and drink safely and optimally.
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Explanation:
you are assessing a middle-aged man with chest pain that you suspect is caused by a cardiac problem. the patient tells you that he does not want to go to the hospital and insists that you leave him alone. you should:
The cardiac problem is a buildup of fatty plaques withinside the arteries (atherosclerosis) is the maximum not unusual place reason of coronary artery disease.
Risk elements consist of a negative diet, loss of exercise, weight problems and smoking. Healthy life-style selections can assist decrease the hazard of atherosclerosis. Coronary artery disease, arrhythmia, heart valve disease and heart failure are the four most common types of heart disease. Heart disease refers to several types of conditions that affect the heart. It can be treated by a Healthy lifestyle habits — such as eating a low-fat, low-salt diet, getting regular exercise and good sleep, and not smoking — are an important part of treatment.
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at a very large incident, the ____ section is responsible for managing the tactical operations usually handled by the IC on routine EMS calls.
At a very large incident, the operations section is responsible for managing the tactical operations usually handled by the IC on routine EMS calls.
Emergency Medical Service (EMS) is a branch of emergency services dedicated to providing out-of-hospital acute medical aid and/or transport to definitive care, to patients with diseases and injuries that the patient, or the caregiver, believes constitutes a medical emergency.
The purpose of the Operations Section is to hold out the response activities delineate within the Incident. Action arrange. Operations Section objectives include: to offer disease info to responders, clinicians, the public, and other. They support the event of the Incident Action decide to guarantee it accurately reflects current operations.
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morphine is ordered to infuse at 3mg/hr. the medication is prepared with 60mg of morphine in 250ml of fluid. at what rate should your pump be set
12.5 ml/hr is the right answer. The dosage of morphine to be infused is 3 mg/hr. 250 cc of liquid and 60 milligrammes of morphine are used to produce the medicine. 12.5 ml per hour should be the setting for your pump.
[tex]X mL/hr = 250mL/60 mg x 3 mg/hr= 12.5 ml/hr[/tex]
If you only need to calculate the infusion rate, or the amount of medication to be infused every hour, divide the total volume in mL by the total number of hours the drug is to be infused over to get the rate in mL per hour. For intravenous delivery, it's crucial to administer morphine gradually over a period of 4 to 5 minutes while the patient is lying down. In adults and adolescents older than 12 years old, appropriate starting doses of morphine for continuous intravenous infusion are 1-2 mg per hour.
So, we can conclude that the correct response is 12.5 ml/hr. Your pump's setting should be 12.5 ml per hour.
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you are dispatched emergent to a possible carbon monoxide poisoning in a family residence. as you are questioning your patient, your partner is about to apply the pulse oximetry. you quickly remember in school you learned that cos affinity for hemoglobin compared to oxygen is times greater?
I quickly remember in school I learned that CO's affinity for hemoglobin compared to oxygen is 200 times greater.
Carbon monoxide has a 200-fold higher affinity for hemoglobin than oxygen does. As soon as one molecule of carbon monoxide binds to hemoglobin, the hemoglobin-oxygen dissociation curve changes to the left, further increasing its affinity and significantly reducing the release of oxygen to the tissues.
The pH of tissue decreases and hydrogen ion concentration rises in carbon dioxide. Because of this, oxygen release to tissues is enhanced and hemoglobin's affinity for oxygen decreases. The lung experiences opposite changes.
Hemoglobin-bound carbon monoxide reduces the amount of oxygen carried to bodily tissues and essential organs like the brain and heart. The link between oxygen and hemoglobin is around 200 times weaker than the bond between carbon monoxide and hemoglobin.
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