ATI RN
ATI Fluid Electrolyte and Acid-Base Regulation Questions
Question 1 of 5
A nurse develops a plan of care for a client who has a history of hypocalcemia. What interventions should the nurse include in this clients care plan? (Select all that apply.)
Correct Answer: B
Rationale: The correct answer is B. Straining all urine output and assessing for urinary stones is important for a client with hypocalcemia as they are at risk for developing kidney stones due to increased calcium excretion. By straining urine, the nurse can monitor for the presence of stones. A, using a draw sheet to reposition the client, is not directly related to hypocalcemia. C, providing nonslip footwear, is important for fall prevention but not specific to hypocalcemia. D, since it is not provided, cannot be evaluated.
Question 2 of 5
A nurse is caring for a client who has a serum calcium level of 14 mg/dL. Which provider order should the nurse implement first?
Correct Answer: A
Rationale: The correct answer is A: Encourage oral fluid intake. When a client has hypercalcemia (serum calcium level of 14 mg/dL), the priority is to increase fluid intake to promote renal calcium excretion. This helps prevent complications such as renal calculi. The first step is to dilute the serum calcium by increasing fluid intake, which can help lower the serum calcium level. Connecting the client to a cardiac monitor (B) is not the priority as hypercalcemia affects the kidneys more than the heart. Assessing urinary output (C) is important but encouraging fluid intake is more immediate. Administering oral calcitonin (Calcimar) (D) is not the first action as it is a medication used for long-term management of hypercalcemia, not the immediate priority.
Question 3 of 5
A nurse is caring for a client who is having a subclavian central venous catheter inserted. The client begins to report chest pain and difficulty breathing. After administering oxygen, which action should the nurse take next?
Correct Answer: B
Rationale: The correct answer is B: Prepare to assist with chest tube insertion. Chest pain and difficulty breathing after subclavian central venous catheter insertion could indicate a pneumothorax, a potential complication. Chest tube insertion is indicated to help re-expand the lung and relieve the pressure in the thoracic cavity. This intervention takes priority over the other options because it addresses the potential life-threatening complication of a pneumothorax. Administering nitroglycerin (choice A) is not indicated for chest pain in this scenario. Placing a sterile dressing over the IV site (choice C) is not appropriate for managing chest pain and difficulty breathing. Re-positioning the client into the Trendelenburg position (choice D) is not effective in addressing a pneumothorax and may worsen the client's condition.
Question 4 of 5
The baroreceptors, located in the left atrium and in the carotid and aortic arches, respond to changes in the circulating blood volume and regulate sympathetic and parasympathetic neural activity as well as endocrine activities. Sympathetic stimulation constricts renal arterioles, causing what effect?
Correct Answer: D
Rationale: The correct answer is D: Decrease in glomerular filtration. Sympathetic stimulation constricts renal arterioles, leading to decreased blood flow to the kidneys. This reduction in blood flow decreases the glomerular filtration rate, impacting the kidney's ability to filter blood and produce urine. The constriction of renal arterioles does not directly affect the release of aldosterone (choice A), filtration in the Loop of Henle (choice B), or the reabsorption of sodium (choice C). The primary effect of sympathetic stimulation on renal arterioles is to decrease glomerular filtration by reducing blood flow to the kidneys.
Question 5 of 5
The nurse is providing care for a patient with chronic obstructive pulmonary disease. When describing the process of respiration the nurse explains how oxygen and carbon dioxide are exchanged between the pulmonary capillaries and the alveoli. The nurse is describing what process?
Correct Answer: A
Rationale: The correct answer is A: Diffusion. In respiration, oxygen and carbon dioxide are exchanged between the alveoli and pulmonary capillaries through the process of diffusion. Here's the rationale: 1. Diffusion is the movement of molecules from an area of high concentration to an area of low concentration. 2. In the alveoli, oxygen moves from the air (higher concentration) into the blood (lower concentration) and carbon dioxide moves from the blood (higher concentration) into the air (lower concentration). 3. This exchange occurs passively, without the need for energy input, which is characteristic of diffusion. Summary of other choices: B: Osmosis involves the movement of water across a semi-permeable membrane, not gas exchange. C: Active transport requires energy input to move molecules against their concentration gradient, not seen in gas exchange. D: Filtration involves the movement of molecules through a membrane under pressure, not the passive movement of gases in respiration.
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