# Situation: A 52-year-old woman with moderate rheumatic mitral stenosis is brought to the emergency room (ER) because of palpitations and shortness of breath that began 6 hours ago. The cardiac monitor shows atrial fibrillation with a ventricular rate of about 150/min. She has no known drug allergies. After she is stabilized, oral metoprolol is started. She asks how a drug that slows the heart can help her narrowed mitral valve. Which explanation should the nurse give?

> source: MyMerci (mymerci.kr)  
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> subject: Nursing Practice III — Care of Clients with Problems in Surgery, Oxygenation, Fluid and Electrolytes, Infectious, Inflammatory and Immunologic Response, Cellular Aberrations

## 문제

Situation: A 52-year-old woman with moderate rheumatic mitral stenosis is brought to the emergency room (ER) because of palpitations and shortness of breath that began 6 hours ago. The cardiac monitor shows atrial fibrillation with a ventricular rate of about 150/min. She has no known drug allergies.

After she is stabilized, oral metoprolol is started. She asks how a drug that slows the heart can help her narrowed mitral valve. Which explanation should the nurse give?

## 보기

1. A slower rate lets each beat push harder across the narrowed valve
2. A slower rate keeps clots from forming in her left atrium
3. A slower rate lowers aortic pressure so the left ventricle empties
4. A slower rate gives the left ventricle longer to fill in diastole **✔ 정답**

**정답: 4**

## 해설

In mitral stenosis, blood can flow from the left atrium to the left ventricle only during diastole, and a fast heart rate shortens diastole. A beta blocker slows the rate and lengthens diastole, so the left ventricle fills better and left atrial and pulmonary pressures fall. Beta blockers are therefore helpful, not contraindicated, in mitral stenosis.

## 심화 해설

In mitral stenosis, the mitral valve opening is narrowed, which obstructs blood flow from the left atrium into the left ventricle. This obstruction is present throughout the cardiac cycle, but forward flow across the valve occurs only during diastole, when the mitral valve is open. The key hemodynamic consequence is that the left atrium must generate a higher pressure to push blood through the narrowed orifice, and the left ventricle receives blood only during the diastolic filling period [1].

When atrial fibrillation develops, the ventricular rate becomes rapid and irregular. At a ventricular rate of about 150/min, the cardiac cycle shortens dramatically. The systolic period is relatively preserved, but the diastolic period is disproportionately reduced. Because diastolic time is the only window for blood to cross the stenotic mitral valve, a fast heart rate severely limits left ventricular filling. The left atrium then faces even higher pressure, which is transmitted backward to the pulmonary veins and pulmonary capillaries, producing dyspnea and pulmonary congestion [1].

A beta blocker such as metoprolol slows the ventricular rate, which lengthens the diastolic filling period. With more time available during diastole, the left ventricle can fill more completely despite the narrowed mitral valve. As left ventricular filling improves, the pressure gradient across the mitral valve decreases, and left atrial pressure falls. This reduction in left atrial pressure relieves pulmonary venous congestion and improves the patient’s shortness of breath. Therefore, in mitral stenosis, rate control is not merely a comfort measure; it is a central strategy to improve forward flow and reduce pulmonary pressure.

The other options do not reflect the hemodynamics of mitral stenosis. A slower rate does not make each beat contract more forcefully across the valve; contractility is a property of the myocardium, not the mitral orifice. Anticoagulation, not rate slowing, is the primary intervention to prevent left atrial thrombus formation in atrial fibrillation. Aortic pressure is not the limiting factor in mitral stenosis; the obstruction is upstream, between the left atrium and left ventricle.

Watch out! In most tachyarrhythmias, beta blockers are used to reduce myocardial oxygen demand. In mitral stenosis, the rationale is different: the primary benefit is prolonging diastole to allow left ventricular filling. Key point! Beta blockers are not contraindicated in mitral stenosis; they are specifically useful because they lengthen the diastolic filling time across the stenotic valve.

Pregnancy is a clinical setting where this physiology becomes especially dangerous. Increased plasma volume and cardiac output during pregnancy raise left atrial pressure further, and tachycardia—whether from atrial fibrillation or sinus tachycardia—shortens diastole and can precipitate acute pulmonary edema in women with rheumatic mitral stenosis [1]. The same principle applies in the emergency setting: controlling the ventricular rate is an essential step to stabilize a patient with mitral stenosis and a rapid ventricular response.References (research sources)

- [1]Unmasking Rheumatic Heart Disease in Pregnancy.Research articleTumkur Panduranga V, Gorantla A, Pandal P, Richard S, Budzikowski AS. (2025) · DOI: 10.7759/cureus.100328

## 임상 시나리오

Mitral Stenosis and Rate ControlWhy slowing the heart helps a narrowed valve
In mitral stenosis, blood flows from the left atrium to the left ventricle only during diastole. A fast ventricular rate shortens diastole, so less time is available for blood to cross the narrowed valve.

A beta blocker such as metoprolol slows the ventricular rate and lengthens the diastolic filling period. This allows the left ventricle to fill more completely, which lowers left atrial pressure and reduces pulmonary congestion.

CautionRate control does not prevent clot formation in atrial fibrillation. Patients with mitral stenosis and atrial fibrillation require anticoagulation for stroke prevention.

## 핵심 개념

- **Mitral stenosis** — Narrowing of the mitral valve orifice that obstructs blood flow from the left atrium to the left ventricle, with forward flow occurring only during diastole.
- **Diastole** — The relaxation phase of the cardiac cycle when the ventricles fill with blood; the only time blood can cross the mitral valve.
- **Beta blocker** — A drug class that slows heart rate and prolongs diastolic filling time, improving hemodynamics in mitral stenosis.
- **Atrial fibrillation** — A rapid, irregular atrial rhythm that can cause a fast ventricular rate and shorten diastolic filling time.
- **Left atrial pressure** — Pressure in the left atrium that rises when mitral stenosis or tachycardia impairs left ventricular filling, leading to pulmonary congestion.

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