ATI RN
Cardiovascular System Exam
1. Which heart chamber receives venous blood returning to the heart via the superior and inferior vena cava?
- A. Right atrium
- B. Left atrium
- C. Right ventricle
- D. Left ventricle
Correct answer: A
Rationale: The correct answer is A: Right atrium. The right atrium is the heart chamber that receives deoxygenated blood returning from the body via the superior and inferior vena cava. The blood enters the right atrium from the vena cava and then passes through the tricuspid valve into the right ventricle. Choices B, C, and D are incorrect because the left atrium receives oxygenated blood from the lungs, the right ventricle pumps blood to the lungs for oxygenation, and the left ventricle pumps oxygenated blood to the body.
2. 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.
3. The nurse is administering digoxin to a client. What is the most important parameter to check before administration?
- A. Heart rate
- B. Blood pressure
- C. Respiratory rate
- D. Oxygen saturation
Correct answer: A
Rationale: The correct answer is A: Heart rate. Before administering digoxin, it is crucial to check the client's heart rate because digoxin can cause bradycardia, making it essential to ensure the heart rate is within the appropriate range. Blood pressure, respiratory rate, and oxygen saturation are also important parameters to monitor in a clinical setting, but when administering digoxin, the focus should primarily be on the heart rate due to its potential effects on cardiac function.
4. What structures hold up the AV valves and are anchored to the ventricular wall by the papillary muscles?
- A. Chordae tendineae
- B. Papillary muscles
- C. Semilunar valves
- D. Aortic valve
Correct answer: A
Rationale: The correct answer is A: Chordae tendineae. Chordae tendineae are fibrous cords that connect the AV valves to the papillary muscles, preventing the valves from inverting during ventricular contraction. Papillary muscles (choice B) anchor the chordae tendineae to the ventricular wall but do not hold up the AV valves directly. Semilunar valves (choice C) are located between the ventricles and the major arteries and are not involved in holding up the AV valves. The aortic valve (choice D) is one of the semilunar valves and is not responsible for holding up the AV valves.
5. Which condition is characterized by the sudden onset of shortness of breath, often occurring at night and associated with heart failure?
- A. Paroxysmal nocturnal dyspnea
- B. Sleep apnea
- C. Orthopnea
- D. Dyspnea
Correct answer: A
Rationale: Paroxysmal nocturnal dyspnea is the correct answer. It is characterized by the sudden onset of shortness of breath during sleep, often associated with heart failure. Choice B, Sleep apnea, involves pauses in breathing during sleep but is not specifically associated with heart failure. Choice C, Orthopnea, is difficulty breathing that occurs when lying down and is relieved by sitting up, not necessarily associated with heart failure. Choice D, Dyspnea, is a general term for difficulty breathing and does not specifically describe the sudden onset at night associated with heart failure as seen in paroxysmal nocturnal dyspnea.
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