HESI RN
RN Medical/Surgical NGN HESI 2023 Questions
Question 1 of 5
A client is being prepared for a colonoscopy. Into which position does the nurse assist the client for the procedure?
Correct Answer: A
Rationale: During a colonoscopy, the client is positioned in the left Sims' position. This position is chosen as it optimally utilizes the client's anatomy to facilitate the introduction of the colonoscope. The lithotomy position (Choice B) is commonly used for gynecological exams, not colonoscopies. The knee-chest position (Choice C) is typically employed for rectal examinations or certain surgical procedures, not colonoscopies. The right Sims' position (Choice D) is a less common position for colonoscopy compared to the left Sims' position.
Question 2 of 5
A client is receiving a continuous IV infusion of heparin for the treatment of deep vein thrombosis. The client's activated partial thromboplastin time (aPTT) level is 80 seconds. The client's baseline before the initiation of therapy was 30 seconds. Which action does the nurse anticipate is needed?
Correct Answer: C
Rationale: The nurse needs to decrease the rate of the heparin infusion. The therapeutic dose of heparin for the treatment of deep vein thrombosis is designed to keep the aPTT between 1.5 and 2.5 times normal. With the client's aPTT level elevated to 80 seconds from a baseline of 30 seconds, it indicates that the current rate of heparin infusion is too high. Lowering the rate of infusion is necessary to bring the aPTT within the desired therapeutic range. Choices A, B, and D are incorrect because shutting off the infusion, increasing the rate, or leaving it as is would not address the elevated aPTT level and may lead to complications.
Question 3 of 5
A healthcare professional is reviewing laboratory results for a client who is at risk for nephrotoxicity due to medications. Which of the following serum creatinine results does the healthcare professional document as normal?
Correct Answer: B
Rationale: The normal serum creatinine level typically ranges from 0.6 to 1.3 mg/dL. A result of 1.0 mg/dL falls within this normal range. A serum creatinine level of 0.2 mg/dL is abnormally low and may indicate decreased muscle mass or malnutrition. On the other hand, results of 2.8 mg/dL and 3.9 mg/dL are elevated, signifying impaired kidney function and potential nephrotoxicity from medications.
Question 4 of 5
A client is experiencing diarrhea. For which acid-base disorder should the nurse assess the client?
Correct Answer: A
Rationale: When a client experiences diarrhea, the loss of bicarbonate-rich fluids from the body leads to a decrease in the bicarbonate levels in the blood, resulting in metabolic acidosis. Metabolic alkalosis (choice B) is characterized by an increase in bicarbonate levels, which is not typically associated with diarrhea. Respiratory acidosis (choice C) is caused by retention of carbon dioxide, while respiratory alkalosis (choice D) results from excessive exhalation of carbon dioxide, neither of which are directly related to diarrhea. Therefore, the correct answer is metabolic acidosis (choice A) in the context of diarrhea.
Question 5 of 5
A client with a history of lung disease is at risk for respiratory acidosis. For which of the following signs and symptoms does the nurse assess this client?
Correct Answer: A
Rationale: The correct answer is A: Disorientation and dyspnea. In respiratory acidosis, the retention of carbon dioxide leads to an increase in carbonic acid, causing the pH of the blood to decrease. This can result in symptoms such as dyspnea (difficulty breathing) due to hypoxia and disorientation due to the effects of hypercapnia (elevated carbon dioxide levels) on the brain. Choice B is incorrect because while drowsiness and tachypnea can be present in respiratory acidosis, headache is not a common symptom. Choice C is incorrect because dizziness and paresthesias are not typical symptoms of respiratory acidosis. Choice D is incorrect because dysrhythmias and a decreased respiratory rate and depth are more commonly associated with respiratory alkalosis, not respiratory acidosis.