ATI RN
ATI Medical Surgical Proctored Exam
1. A client presents to the emergency department with an acute myocardial infarction (MI) at 1500 (3:00 PM). The facility has 24-hour catheterization laboratory capabilities. To meet The Joint Commission's Core Measures set, by what time should the client have a percutaneous coronary intervention performed?
- A. 1530 (3:30 PM)
- B. 1600 (4:00 PM)
- C. 1630 (4:30 PM)
- D. 1700 (5:00 PM)
Correct answer: C
Rationale: The Joint Commission's Core Measures set for MI includes percutaneous coronary intervention within 90 minutes of the diagnosis of myocardial infarction. Since the client presented at 1500 (3:00 PM), the percutaneous coronary intervention should be performed no later than 1630 (4:30 PM), to adhere to the 90-minute timeline for optimal outcomes.
2. A client has a disposable three-chamber chest tube in place. Which of the following findings should indicate to the nurse that the client is experiencing a complication?
- A. Continuous bubbling in the water-seal chamber
- B. Occasional bubbling in the water-seal chamber
- C. Constant bubbling in the suction-control chamber
- D. Fluctuations in the fluid level in the water-seal chamber
Correct answer: A
Rationale: Continuous bubbling in the water-seal chamber indicates air is leaking into the pleural space, which is a complication. The water-seal chamber should have intermittent bubbling during normal functioning. Occasional bubbling in the water-seal chamber is normal and shows the system is working as intended. Constant bubbling in the suction-control chamber suggests an issue with the suction control. Fluctuations in the fluid level in the water-seal chamber are an expected finding.
3. A client with chronic obstructive pulmonary disease (COPD tells the nurse, 'I can feel the congestion in my lungs, and I certainly cough a lot, but I can't seem to bring anything up.' Which of the following actions should the nurse take to help this client with tenacious bronchial secretions?
- A. Maintaining a semi-Fowler's position as often as possible
- B. Administering oxygen via nasal cannula at 2 L/min
- C. Helping the client select a low-salt diet
- D. Encouraging the client to drink 2 to 3 L of water daily
Correct answer: D
Rationale: Encouraging the client to drink 2 to 3 liters of water daily helps to thin bronchial secretions, making them easier to expectorate. This can assist the client in coughing up the tenacious secretions. Maintaining a semi-Fowler's position can aid in improving lung expansion but may not directly address the issue of clearing the secretions. Administering oxygen via nasal cannula at 2 L/min can help improve oxygenation but does not specifically target the removal of bronchial secretions. Selecting a low-salt diet is important for overall health, but it does not directly address the client's immediate concern of clearing the bronchial secretions.
4. What information should be included as effective for preventing chronic bronchitis in a community presentation?
- A. Maintenance of ideal weight
- B. Annual influenza immunization
- C. Smoking cessation
- D. Regular moderate exercise
Correct answer: C
Rationale: Chronic bronchitis is often linked to smoking. Smoking cessation is the most effective preventive measure to reduce the risk of developing chronic bronchitis. Smoking damages the airways and leads to inflammation, making individuals more susceptible to chronic bronchitis. While maintaining an ideal weight, getting an annual influenza vaccine, and engaging in regular moderate exercise are beneficial for overall health, the most crucial intervention to prevent chronic bronchitis is quitting smoking.
5. A client is postoperative with shallow respirations at 9/min. Which acid-base imbalance should the nurse identify the client as being at risk for developing initially?
- A. Respiratory acidosis
- B. Respiratory alkalosis
- C. Metabolic acidosis
- D. Metabolic alkalosis
Correct answer: A
Rationale: The client's shallow respirations at 9/min indicate hypoventilation, leading to an accumulation of carbon dioxide in the blood, causing respiratory acidosis. In this scenario, the client is at risk for developing respiratory acidosis due to inadequate ventilation and subsequent CO2 retention.
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