The patient has just returned from having an arteriovenous fistula placed. The patient asks, “When will they be able to use this and take this other catheter out?” The nurse should reply,

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Question 1 of 5

The patient has just returned from having an arteriovenous fistula placed. The patient asks, “When will they be able to use this and take this other catheter out?” The nurse should reply,

Correct Answer: C

Rationale: The correct answer is C: “The fistula will be usable in about 4 to 6 weeks.” This is because arteriovenous fistulas typically require a maturation period of 4 to 6 weeks before they can be used for dialysis. During this time, the fistula will develop into a strong, durable access point for hemodialysis. Choice A is incorrect because the fistula needs time to mature before it can be used, and immediate use may damage it. Choice B is incorrect as it underestimates the maturation period required. Choice D is incorrect as the maturation time does not depend on the manufacturer but on the patient's physiology and healing process.

Question 2 of 5

Slow continuous ultrafiltration is also known as isolated ultrafiltration and is used to

Correct Answer: A

Rationale: Rationale: Slow continuous ultrafiltration is a method used to remove excess plasma water in cases of volume overload, making choice A the correct answer. This process does not involve adding dialysate (choice C) or combining ultrafiltration, convection, and dialysis (choice D). While ultrafiltration does involve the removal of fluids and solutes, it is primarily achieved through ultrafiltration rather than convection (choice B).

Question 3 of 5

The critical care nurse is responsible for monitoring the patient receiving continuous renal replacement therapy (CRRT). In doing so, the nurse should

Correct Answer: B

Rationale: Correct Answer: B Rationale: 1. Hemofilter clotting can affect CRRT efficiency. 2. Assessing every 6 hours allows early detection and intervention. 3. Clotting can lead to treatment interruptions or complications. 4. Regular assessment ensures optimal therapy delivery. Other Choices: A: Assessing tubing warmth is not a reliable indicator of CRRT function or complications. C: Covering dialysis lines to protect from light is not a standard practice in CRRT monitoring. D: Using clean technique is not sufficient for vascular access dressing changes; aseptic technique is required for infection prevention.

Question 4 of 5

The nurse is caring for a patient receiving peritoneal dialysis. The patient suddenly complains of abdominal pain and chills. The patient’s temperature is elevated. The nurse should

Correct Answer: D

Rationale: The correct answer is D: inform the provider of probable visceral perforation. This is the most urgent action as sudden abdominal pain, chills, and elevated temperature in a patient receiving peritoneal dialysis could indicate a serious complication like visceral perforation, which requires immediate medical attention to prevent further complications. Assessing peritoneal dialysate return (A) may provide some information but does not address the urgent need to address a potential visceral perforation. Checking the patient's blood sugar (B) and evaluating the patient's neurological status (C) are not priorities in this situation and do not address the potential life-threatening complication of visceral perforation.

Question 5 of 5

Identify which substances in the glomerular filtrate would indicate a problem with renal function. (Select all that apply.)

Correct Answer: A

Rationale: The presence of protein in the glomerular filtrate indicates a problem with renal function as healthy kidneys should not allow large molecules like proteins to pass through the filtration barrier. This could be a sign of kidney damage or dysfunction. Sodium, creatinine, and red blood cells are normally present in the filtrate and are not specific indicators of renal function issues. Sodium is actively reabsorbed in the renal tubules, creatinine is a waste product filtered by the kidneys, and a small number of red blood cells may pass through the filtration barrier under normal circumstances.

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