ATI RN
Physical Exam Cardiovascular System
1. What are the pressure-sensitive structures located in the aortic and carotid bodies called?
- A. Baroreceptors
- B. Chemoreceptors
- C. Nociceptors
- D. Mechanoreceptors
Correct answer: A
Rationale: Baroreceptors are the correct answer. Baroreceptors are specialized sensory receptors that detect changes in pressure within blood vessels. They are primarily located in the aortic arch and carotid sinuses, where they play a crucial role in regulating blood pressure. Chemoreceptors (Choice B) are receptors that detect chemical changes, not pressure changes. Nociceptors (Choice C) are responsible for detecting painful stimuli. Mechanoreceptors (Choice D) respond to mechanical stimuli such as touch, pressure, and vibration, but they are not specifically located in the aortic and carotid bodies.
2. The nurse is giving nitroglycerin sublingually for chest pain. What is the most important instruction to give to the client?
- A. Place the tablet under the tongue and let it dissolve completely.
- B. Swallow the tablet whole with a glass of water.
- C. Chew the tablet and then swallow it.
- D. Take one tablet every 5 minutes until pain is relieved.
Correct answer: A
Rationale: The correct answer is A. The tablet should be placed under the tongue and allowed to dissolve completely to ensure rapid absorption. This route of administration allows the medication to be quickly absorbed into the bloodstream. Choice B is incorrect because nitroglycerin is meant to be absorbed sublingually, not swallowed. Choice C is incorrect as chewing the tablet can cause the medication to be rapidly absorbed, leading to adverse effects like a drop in blood pressure. Choice D is incorrect because the client should take only one tablet every 5 minutes up to a maximum of three tablets for chest pain relief.
3. In cases of myocardial infarction leading to shock, which medication is appropriate to counteract shock?
- A. Atropine
- B. Dopamine
- C. Digoxin
- D. Adenosine
Correct answer: B
Rationale: In cases of myocardial infarction leading to shock, dopamine is the drug of choice. Dopamine helps increase blood pressure and improve blood flow to vital organs, making it beneficial in managing shock. Atropine is mainly used for symptomatic bradycardia, not for shock. Digoxin is a cardiac glycoside used in heart failure and atrial fibrillation, not for managing shock. Adenosine is typically used for diagnosing and treating supraventricular tachycardias, not for shock associated with myocardial infarction.
4. This is a type of lung disease that results from the inhalation of certain dusts, often in the workplace, leading to lung damage.
- A. Pneumoconiosis
- B. Asbestosis
- C. Silicosis
- D. Anthracosis
Correct answer: A
Rationale: Pneumoconiosis is the correct answer. It is a lung disease caused by inhaling certain types of dust, commonly in a workplace setting, resulting in lung damage. Asbestosis (choice B) is a specific type of pneumoconiosis caused by asbestos fibers. Silicosis (choice C) is another type of pneumoconiosis caused by inhaling crystalline silica dust. Anthracosis (choice D) is a condition characterized by the accumulation of coal dust particles in the lungs, not necessarily resulting in lung damage.
5. Which condition is an infection that inflames the air sacs in one or both lungs, which may fill with fluid?
- A. Pneumonia
- B. Bronchitis
- C. Tuberculosis
- D. Cystic fibrosis
Correct answer: A
Rationale: The correct answer is A, Pneumonia. Pneumonia is an infection that inflames the air sacs in the lungs, which may fill with fluid or pus, causing symptoms like cough, fever, and difficulty breathing. Bronchitis (choice B) is an inflammation of the bronchial tubes, not the air sacs in the lungs. Tuberculosis (choice C) is a bacterial infection that primarily affects the lungs but does not always cause fluid accumulation in the air sacs. Cystic fibrosis (choice D) is a genetic disorder that affects the lungs but does not directly cause inflammation of the air sacs with fluid.
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