A normal glomerular filtration rate is
- A. less than 80 mL/min.
- B. 80 to 125 mL/min.
- C. 125 to 180 mL/min.
- D. more than 189 mL/min.
Correct Answer: B
Rationale: The correct answer is B (80 to 125 mL/min) because this range represents the normal glomerular filtration rate (GFR) for a healthy adult. GFR indicates the rate at which blood is filtered by the kidneys, with 125 mL/min being the average value. Values below 80 mL/min (Choice A) suggest impaired kidney function, while values above 189 mL/min (Choice D) may indicate hyperfiltration or underlying conditions. Choice C (125 to 180 mL/min) falls within the normal range, but the typical average is around 125 mL/min. Thus, choice B is the correct answer as it reflects the standard GFR range for adults.
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The nurse is caring for a patient who has a temporary percutaneous dialysis catheter in place. In caring for this patient, the nurse should
- A. apply a sterile gauze dressing to maintain sterility.
- B. replace the transparent dressing every 10 days to prevent manipulation.
- C. assess the catheter site for redness and/or swelling.
- D. use the catheter for drawing blood samples to reduce patient discomfort.
Correct Answer: C
Rationale: The correct answer is C because assessing the catheter site for redness and/or swelling is essential in monitoring for signs of infection or complications. Redness and swelling can indicate infection, which requires prompt intervention.
A: Applying a sterile gauze dressing is not necessary for a temporary percutaneous dialysis catheter unless specified by the healthcare provider.
B: Transparent dressings are typically left in place for several days unless there is a specific reason to change them more frequently.
D: Using the catheter for drawing blood samples is not recommended as it can increase the risk of infection and may interfere with the dialysis process.
The nurse is assigned to care for a patient who presented to the emergency department with diabetic ketoacidosis. A continuous insulin intravenous infusion is started, and hourly bedside glucose monitoring is ordered. The targeted blood glucose value after the first hour of therapy is
- A. 70 to 120 mg/dL.
- B. a decrease of 25 to 50 mg/dL compared with admitting values.
- C. a decrease of 35 to 90 mg/dL compared with admitting values.
- D. less than 200 mg/dL.
Correct Answer: C
Rationale: The correct answer is C: a decrease of 35 to 90 mg/dL compared with admitting values. In diabetic ketoacidosis, there is severe hyperglycemia which needs to be corrected gradually to prevent complications like cerebral edema. A rapid decrease in glucose levels can lead to osmotic shifts and neurological issues. The targeted decrease of 35 to 90 mg/dL is considered safe and effective in managing hyperglycemia in these patients. This range ensures a controlled reduction in blood glucose levels without causing harm.
Choice A (70 to 120 mg/dL) is too broad and may lead to overly aggressive treatment. Choice B (a decrease of 25 to 50 mg/dL) is too conservative and may not adequately address the high glucose levels seen in diabetic ketoacidosis. Choice D (less than 200 mg/dL) does not provide a specific target range for glucose reduction, which is essential in managing diabetic ketoacidosis effectively.
A 100-kg patient gets hemodialysis 3 days a week. In planning the care for this patient, the nurse recommends
- A. a diet of 2500 to 3500 kcal per day.
- B. protein intake of less than 50 grams per day.
- C. potassium intake of 10 mEq per day.
- D. fluid intake of less than 500 mL per day
Correct Answer: A
Rationale: The correct answer is A: a diet of 2500 to 3500 kcal per day. During hemodialysis, patients often experience increased energy expenditure due to the treatment process. Therefore, maintaining a higher caloric intake is crucial to prevent malnutrition and support the body's needs. Options B, C, and D are incorrect as limiting protein intake to less than 50 grams per day may lead to malnutrition in a patient undergoing hemodialysis, restricting potassium intake to 10 mEq per day may not be appropriate as individual needs vary, and restricting fluid intake to less than 500 mL per day can lead to dehydration and electrolyte imbalances in a patient undergoing hemodialysis.
The nurse is caring for a patient who has undergone major abdominal surgery. The nurse notices that the patient’s urine output has been less than 20 mL/hour for the past 2 hours. The patient’s blood pressure is 100/60 mm Hg, and the pulse is 110 beats/min. Previously, the pulse was 90 beats/min with a blood pressure of 120/80 mm Hg. The nurse should
- A. contact the provider and expect a prescription for a normal saline bolus.
- B. wait until the provider makes rounds to report the assessment findings.
- C. continue to evaluate urine output for 2 more hours.
- D. ignore the urine output, as this is most likely postrenal in origin.
Correct Answer: A
Rationale: Rationale:
1. Urine output < 20 mL/hour indicates potential hypoperfusion.
2. Decreased urine output with hypotension and tachycardia suggests inadequate fluid resuscitation.
3. Administering a normal saline bolus can help improve perfusion and stabilize blood pressure.
4. Contacting the provider promptly for orders is crucial in managing this acute situation.
Summary of Incorrect Choices:
B. Delaying reporting to the provider risks worsening the patient's condition.
C. Continuing to evaluate urine output without intervention can lead to further deterioration.
D. Ignoring the urine output due to potential postrenal causes overlooks the urgent need for fluid resuscitation.
Identify which substances in the glomerular filtrate would indicate a problem with renal function. (Select all that apply.)
- A. Protein
- B. Sodium
- C. Creatinine
- D. Red blood cells
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.