# A 28-year-old pregnant woman at 32 weeks gestation with a history of mitral valve stenosis is admitted to the labor and delivery unit with complaints of increasing dyspnea and fatigue. Which assessment finding would be most concerning and require immediate intervention?

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> subject: Maternal Newborn Health

## 문제

A 28-year-old pregnant woman at 32 weeks gestation with a history of mitral valve stenosis is admitted to the labor and delivery unit with complaints of increasing dyspnea and fatigue. Which assessment finding would be most concerning and require immediate intervention?

## 보기

1. Bilateral pedal edema and weight gain of 2 pounds in one week
2. Crackles in bilateral lung bases with oxygen saturation of 88% on room air **✔ 정답**
3. Heart rate of 110 beats per minute with occasional premature ventricular contractions
4. Blood pressure of 140/90 mmHg with mild proteinuria

**정답: 2**

## 해설

Crackles with oxygen saturation of 88% indicates acute pulmonary edema and severe hypoxemia, requiring immediate oxygen therapy and diuretics. Other findings like edema, tachycardia, or mild hypertension are less urgent in this context.

## 심화 해설

Clinical Reasoning and Priority Setting in Valvular Heart Disease During Pregnancy

The scenario describes a pregnant patient with known mitral stenosis (MS) presenting with worsening dyspnea and fatigue. In the context of NCLEX-RN prioritization, the most concerning finding is the one indicating acute decompensated heart failure with impaired gas exchange, which poses an immediate threat to maternal and fetal oxygenation.

Analysis of the Correct Answer

Option 2, crackles in bilateral lung bases with oxygen saturation of 88% on room air, is the most critical finding. Crackles are a hallmark sign of pulmonary edema. In a patient with mitral stenosis, the narrowed valve orifice obstructs blood flow from the left atrium to the left ventricle. The physiological plasma volume expansion of pregnancy further increases left atrial pressure, which is transmitted backward into the pulmonary vasculature. When this hydrostatic pressure exceeds the plasma oncotic pressure, fluid transudes into the pulmonary interstitium and alveoli, causing pulmonary edema. An oxygen saturation of 88% on room air signifies severe hypoxemia, reflecting a critical ventilation-perfusion mismatch and a failing compensatory mechanism. This requires immediate intervention, such as supplemental oxygen, diuresis, and potentially urgent hemodynamic or surgical management, to prevent respiratory arrest. As highlighted in the literature, hemodynamic changes during pregnancy can precipitate rapid decompensation in patients with MS, making early recognition of respiratory distress crucial [1,2].

Analysis of Incorrect Answers

Option 1: Bilateral pedal edema and weight gain of 2 pounds in one week are concerning for fluid retention and possible right-sided heart failure. While these findings warrant investigation and management, they do not represent an immediate, life-threatening compromise of the airway, breathing, or circulation. Pulmonary edema indicates a more advanced and acutely dangerous state of left-sided heart failure. The urgency of managing hypoxemia takes priority over managing peripheral edema.

Option 3: A heart rate of 110 beats per minute with occasional premature ventricular contractions (PVCs) indicates sinus tachycardia and some ventricular irritability. Tachycardia is particularly detrimental in mitral stenosis because a shortened diastolic filling time reduces left ventricular preload while simultaneously increasing left atrial pressure, potentially worsening pulmonary congestion. However, in the presence of confirmed pulmonary edema and hypoxemia, the respiratory compromise is the more immediate threat to life. The arrhythmia is a secondary concern that would be managed concurrently, but the primary assessment finding demanding the most rapid response is the critically low oxygen saturation.

Option 4: A blood pressure of 140/90 mmHg with mild proteinuria raises concern for gestational hypertension or preeclampsia. While this requires close monitoring and management, it does not represent the same level of immediate physiological crisis as acute pulmonary edema with a saturation of 88%. The airway and breathing take precedence in the standard ABC (Airway, Breathing, Circulation) prioritization framework used in nursing. The immediate threat to the patient’s life from profound hypoxemia supersedes the management of a hypertensive disorder at this moment.

Pathophysiology and Clinical Integration

The core of this question lies in understanding the hemodynamic burden of pregnancy on a stenotic mitral valve. Mitral stenosis, often a sequela of rheumatic heart disease, creates a fixed obstruction to left ventricular filling [1,2]. Pregnancy increases blood volume by up to 50%, which elevates left atrial pressure to maintain cardiac output across the stenotic valve. This chronic pressure overload makes the left atrium and pulmonary venous system exquisitely sensitive to any additional stress, such as the tachycardia of labor or a fluid bolus. The resulting acute pulmonary edema is a direct consequence of this pathophysiology. The presence of crackles and a low oxygen saturation is the clinical manifestation of this decompensation, signaling that the patient's compensatory mechanisms have been overwhelmed and immediate action is needed to reduce pulmonary venous pressure and support oxygenation [1,3,4].

## 임상 시나리오

Clinical Practice Guide: Acute Pulmonary Edema in Pregnant Patient with Mitral Stenosis

**Scenario:** A 28-year-old G1P0 at 32 weeks gestation with known mitral stenosis presents with worsening dyspnea, fatigue, bilateral crackles, and an SpO2 of 88% on room air.

Immediate Nursing Actions

- **Airway and Breathing:** Administer high-flow oxygen via non-rebreather mask to target SpO2 > 95%. Position the patient in a high Fowler's position with legs dependent to reduce venous return and pulmonary congestion.

- **Circulation:** Establish two large-bore IV lines. Prepare for administration of intravenous diuretics (e.g., furosemide) as prescribed to rapidly reduce preload. Insert an indwelling urinary catheter for strict intake and output monitoring.

- **Fetal Monitoring:** Initiate continuous external fetal heart rate and contraction monitoring. Fetal distress is a direct consequence of maternal hypoxemia and low cardiac output.

- **Notification:** Immediately notify the Rapid Response Team, obstetrician, cardiologist, and anesthesiologist. This is a high-risk situation requiring a multidisciplinary approach for potential emergent delivery.

Pathophysiology and Rationale

The physiological hypervolemia of pregnancy increases left atrial pressure. In mitral stenosis, the stenotic valve prevents adequate forward flow, causing a backward pressure wave into the pulmonary veins. When hydrostatic pressure exceeds oncotic pressure, fluid transudes into the alveoli, causing pulmonary edema. An SpO2 of 88% indicates a critical ventilation-perfusion mismatch and severe hypoxemia, threatening both maternal and fetal life.

Ongoing Assessment and Monitoring

- Continuous pulse oximetry and cardiac telemetry.

- Frequent auscultation of lung sounds to assess response to diuretic therapy.

- Monitor for signs of respiratory depression or impending respiratory arrest.

- Assess for signs of decreased cardiac output: hypotension, altered mental status, oliguria.

- Prepare for transfer to an intensive care unit for invasive hemodynamic monitoring.

## 핵심 개념

- **Mitral Stenosis** — Narrowing of the mitral valve orifice that obstructs blood flow from the left atrium to the left ventricle, leading to increased left atrial pressure and pulmonary congestion.
- **Pulmonary Edema** — Accumulation of fluid in the lung interstitium and alveoli, often caused by increased pulmonary capillary hydrostatic pressure secondary to left-sided heart failure.
- **Hypoxemia** — An abnormally low concentration of oxygen in the arterial blood, defined as an oxygen saturation below 90%, indicating severe respiratory compromise.
- **Physiological Plasma Volume Expansion** — The normal increase in blood plasma volume during pregnancy, which can exacerbate pre-existing cardiac conditions by increasing preload and cardiac workload.

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