# A nurse is assessing a 65-year-old female patient admitted with suspected coronary artery disease. Which assessment finding would be most indicative of myocardial ischemia?

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## 문제

A nurse is assessing a 65-year-old female patient admitted with suspected coronary artery disease. Which assessment finding would be most indicative of myocardial ischemia?

## 보기

1. Blood pressure of 160/90 mmHg
2. Heart rate of 110 beats per minute
3. Presence of peripheral edema
4. ST-segment depression on ECG **✔ 정답**

**정답: 4**

## 해설

ST-segment depression on ECG is the most specific indicator of myocardial ischemia, directly reflecting inadequate oxygen supply. Other options are non-specific findings.

## 심화 해설

Correct Answer Analysis

The most indicative finding of myocardial ischemia among the options is ST-segment depression on the electrocardiogram (ECG). Myocardial ischemia alters the electrical activity of cardiac myocytes, specifically affecting the repolarization phase of the action potential. This results in characteristic changes on the body-surface ECG.

According to the electrophysiological mechanisms described by Neema and Panidapu, ST-segment depression is defined as a displacement of the ST segment below the PR-segment baseline [1]. A downward displacement greater than 0.5 mm below the baseline, measured 40 ms after the J point, is considered significant [1]. This finding is a hallmark of subendocardial ischemia, where the inner layer of the myocardium is deprived of oxygen. The injury current generated between the ischemic subendocardium and the normally perfused epicardium causes the ST segment vector to point away from the exploring electrode, thus creating the depression seen on the ECG tracing.

Distractor Analysis

- **Option 1 (Blood pressure of 160/90 mmHg):** This finding indicates hypertension. While hypertension is a major risk factor for the development of coronary artery disease and can increase myocardial oxygen demand, it is not a direct, real-time indicator of an acute ischemic event. The provided source on electrophysiological mechanisms notes that conditions like hypertrophy can cause secondary ST-T changes, but the blood pressure value itself is a hemodynamic parameter, not a direct electrical signature of ischemia [1].

- **Option 2 (Heart rate of 110 beats per minute):** A heart rate of 110 bpm is tachycardia. Similar to hypertension, tachycardia increases myocardial oxygen consumption and can precipitate ischemia in patients with underlying coronary stenosis. However, it is a nonspecific compensatory response that can be triggered by pain, anxiety, fever, or hypovolemia. It does not provide the definitive, localized evidence of myocardial ischemia that an ECG change does.

- **Option 3 (Presence of peripheral edema):** Peripheral edema is a classic sign of right-sided heart failure or volume overload. It reflects a chronic or subacute backup of fluid due to ineffective pumping, not the acute electrical dysfunction of ischemic myocardium. This finding is a consequence of long-standing heart disease or other systemic conditions and is not a primary marker for acute myocardial ischemia.

Clinical Reasoning and Advanced ECG Patterns

It is crucial to recognize that not all critical myocardial ischemia presents with classic ST-segment elevation. The provided literature highlights several high-risk ECG patterns that can appear as ST-segment depression or subtle T-wave changes, which are often missed but signify severe proximal left anterior descending (LAD) artery disease .

For instance, the de Winter pattern is a rare STEMI equivalent characterized by upsloping ST-segment depression of more than 1 mm at the J point, accompanied by tall, symmetric T waves in the precordial leads . This pattern is seen in only 2%-3% of proximal LAD occlusions and carries a mortality risk similar to classic STEMI, mandating urgent reperfusion therapy . Similarly, the Aslanger pattern is a subtle manifestation of inferior occlusion myocardial infarction that may not meet traditional ST-elevation criteria, particularly in patients with multivessel disease, and can present with findings that are easily mistaken for nonspecific changes . These patterns underscore why a nurse's ability to recognize ST-segment depression as a primary indicator of ischemia is a critical safety skill. When a patient presents with chest pain, the ECG is the most immediate and specific tool for triaging patients toward life-saving interventions, as hemodynamic changes like blood pressure and heart rate can be late, variable, or nonspecific signs.

References (research sources)

- [1]Electrophysiological Mechanisms of ST Segment and T-Wave Changes: Insights into Ischemia, Conduction Delay, Hypertrophy, and Electrolyte Disturbance.Research articleNeema PK, Panidapu N. (2026) · DOI: 10.4103/aca.aca_304_25

## 임상 시나리오

Identifying Myocardial Ischemia on ECGKey Indicator: ST-Segment Depression
The most specific ECG finding for subendocardial ischemia is ST-segment depression. This is defined as a downward displacement of the ST segment below the PR-segment baseline.

A depression greater than 0.5 mm, measured 40 ms after the J point, is considered clinically significant. This pattern reflects an injury current vector pointing away from the exploring electrode.

CautionDo not rely on hemodynamic signs like blood pressure or heart rate alone to diagnose acute ischemia. These are nonspecific and may be absent. A 12-lead ECG is essential for initial evaluation.

## 핵심 개념

- **Myocardial Ischemia** — A condition where blood flow to the heart muscle is reduced, preventing it from receiving enough oxygen.
- **ST-segment Depression** — A downward displacement of the ST segment on an ECG, typically indicating subendocardial myocardial ischemia.
- **Subendocardial Ischemia** — Lack of oxygen affecting the innermost layer of the heart muscle, often manifesting as ST-segment depression on ECG.
- **J Point** — The point on an ECG where the QRS complex ends and the ST segment begins, used as a reference for measuring ST-segment deviation.
- **Repolarization** — The phase of the cardiac action potential where the myocardial cell returns to its resting electrical state, often altered during ischemia.

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