# Situation: On a medical-surgical ward, the nurse is assigned to three adult clients who are receiving intravenous (IV) fluid and electrolyte therapy. A 45-year-old woman with a brain tumor has cerebral edema with signs of increased intracranial pressure. She has received osmotic therapy and is on nothing by mouth. Her serum sodium is 149 mEq/L (135–145 mEq/L), and the physician's protocol targets a serum sodium of 145–155 mEq/L. Which IV fluid order should the nurse question?

> source: MyMerci (mymerci.kr)  
> url: https://mymerci.kr/pages/nclex_q.php?qn_id=629803  
> language: ko  
> subject: Nursing Practice III — Care of Clients with Problems in Surgery, Oxygenation, Fluid and Electrolytes, Infectious, Inflammatory and Immunologic Response, Cellular Aberrations

## 문제

Situation: On a medical-surgical ward, the nurse is assigned to three adult clients who are receiving intravenous (IV) fluid and electrolyte therapy.

A 45-year-old woman with a brain tumor has cerebral edema with signs of increased intracranial pressure. She has received osmotic therapy and is on nothing by mouth. Her serum sodium is 149 mEq/L (135–145 mEq/L), and the physician's protocol targets a serum sodium of 145–155 mEq/L. Which IV fluid order should the nurse question?

## 보기

1. 0.9% sodium chloride at 75 mL/h
2. 0.9% sodium chloride with potassium chloride 20 mEq/L at 75 mL/h
3. 0.45% sodium chloride at 75 mL/h **✔ 정답**
4. 3% sodium chloride per the unit's neurologic protocol

**정답: 3**

## 해설

0.45% sodium chloride is hypotonic: water moves from the vessels into cells, including brain cells, which worsens cerebral edema and raises intracranial pressure. Her sodium is above the normal range, but it is within the target set for her raised intracranial pressure, so it is not a reason to give free water. Isotonic 0.9% sodium chloride, with or without added potassium, keeps water in the extracellular space, and 3% sodium chloride is used for raised intracranial pressure per neurologic protocol.

## 심화 해설

Clinical context

This client has a brain tumor with cerebral edema and elevated intracranial pressure (ICP). She is receiving osmotic therapy and is kept NPO. Her serum sodium of 149 mEq/L is above the usual reference range of 135–145 mEq/L, but it is deliberately maintained within the neurologic target of 145–155 mEq/L to control cerebral swelling.

Why hypotonic fluid is dangerous here

0.45% sodium chloride is a hypotonic solution. When infused, it lowers plasma osmolality relative to the intracellular compartment. Water then shifts from the intravascular space into cells, including brain cells. In a patient with cerebral edema, this additional intracellular water worsens brain swelling and further elevates ICP. Hypotonic fluids are contraindicated when the therapeutic goal is to keep water out of the brain parenchyma.

Why the other orders are appropriate

0.9% sodium chloride is isotonic. It remains primarily in the extracellular compartment and does not create an osmotic gradient that pulls water into brain cells. Adding potassium chloride 20 mEq/L does not change the tonicity enough to alter this safety profile, provided the potassium dose is appropriate and renal function is adequate.

3% sodium chloride is hypertonic. Hypertonic saline draws water from the intracellular space into the intravascular compartment, reducing cerebral edema and lowering ICP. This is the rationale for its use in neurologic protocols for elevated ICP. The literature supports hypertonic saline as an osmotic agent that creates an osmotic gradient favoring water movement out of brain tissue [1]. In brain surgery and neurocritical care, fluid selection is guided by the principle of maintaining or increasing plasma osmolality to avoid exacerbating cerebral edema .

Interpreting the sodium value

The sodium of 149 mEq/L is above normal, but it is not a reason to administer free water. In the setting of elevated ICP, a mildly hypernatremic state is therapeutic, not a complication to correct. Giving hypotonic fluid to lower the sodium would reverse the osmotic protection and worsen cerebral edema.

| Fluid | Tonicity | Effect on brain water | Appropriate here? |
| --- | --- | --- | --- |
| 0.9% NaCl | Isotonic | No net shift into cells | Yes |
| 0.9% NaCl + KCl 20 mEq/L | Isotonic | No net shift into cells | Yes |
| 0.45% NaCl | Hypotonic | Water moves into brain cells, worsening edema | No — question this order |
| 3% NaCl | Hypertonic | Water moves out of brain cells, reducing edema | Yes, per neurologic protocol |

Watch out! A sodium above the normal range does not automatically mean the patient needs hypotonic fluid. The clinical context matters: in cerebral edema, the elevated sodium is often the treatment target. Key point! For any patient with cerebral edema or elevated ICP, hypotonic fluids are the priority to question because they directly increase intracellular brain water and raise ICP.References (research sources)

- [1]Use of hypertonic saline solutions in treatment of cerebral edema and intracranial hypertension.Research articleQureshi AI, Suarez JI (2000) · DOI: 10.1097/00003246-200009000-00032

## 임상 시나리오

IV Fluid Selection in Cerebral EdemaAvoid hypotonic solutions when managing elevated ICP
For patients with cerebral edema and elevated intracranial pressure, the goal is to keep water out of brain cells. 0.45% sodium chloride is hypotonic and shifts water into cells, worsening brain swelling.

0.9% sodium chloride is isotonic and stays in the extracellular space, making it safe. 3% sodium chloride is hypertonic and draws water out of brain cells, reducing ICP.

CautionA serum sodium of 149 mEq/L may be above normal, but it is within the neurologic target of 145–155 mEq/L. Do not give free water to correct this elevation.

## 핵심 개념

- **Hypotonic solution** — A solution with lower osmolality than plasma, causing water to shift into cells.
- **Isotonic solution** — A solution with osmolality similar to plasma, remaining primarily in the extracellular space.
- **Hypertonic solution** — A solution with higher osmolality than plasma, drawing water from cells into the intravascular space.
- **Cerebral edema** — Excess fluid accumulation in brain tissue, leading to increased intracranial pressure.
- **Osmotic therapy** — Use of hypertonic agents to create an osmotic gradient that reduces brain swelling.

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