Analyzes 12-lead ECGs for acute findings requiring emergent intervention, using a systematic approach to identify STEMI patterns, life-threatening arrhythmias, and high-risk ECG signatures.
Why This Skill Exists
The 12-lead ECG is the single most important initial diagnostic test in acute chest pain evaluation and is required within 10 minutes of ED arrival per ACC/AHA guidelines. STEMI misdiagnosis or delayed cath lab activation carries catastrophic consequences — door-to-balloon time >90 minutes is associated with a 7.5% increase in in-hospital mortality per 30-minute delay. Conversely, false-positive cath lab activations waste resources and expose patients to unnecessary invasive procedures (false activation rates range 10-30% across institutions).
Beyond ACS, the emergency ECG must be screened for lethal arrhythmias (complete heart block, wide-complex tachycardia), metabolic emergencies (severe hyperkalemia), drug toxicity (sodium channel blockade, QT prolongation), and structural pathology (PE, pericarditis, Brugada). Emergency physicians must interpret ECGs with higher sensitivity than specificity — the cost of a miss far exceeds the cost of a false alarm. This skill provides a systematic, reproducible framework for emergency ECG interpretation.
Checkpoint A: Pre-Draft Intake (Mandatory)
What is the clinical context (chief complaint, age, sex)? (Default: always interpret in clinical context)
Is a prior ECG available for comparison? (Default: request from EMR if available)
What is the time of symptom onset relative to the ECG acquisition? (Default: document both timestamps)
Is the patient currently symptomatic during this ECG? (Default: document symptom status at time of tracing)
What medications is the patient taking (digoxin, antiarrhythmics, QT-prolonging agents)? (Default: query medication list)
Does the patient have a pacemaker or ICD? (Default: document device presence and type)
What is the patient's potassium level if known? (Default: check point-of-care metabolic panel)
Documents to Request
Prior ECG tracings (most recent and baseline)
Current medication list with focus on cardiac and QT-prolonging drugs
Pacemaker/ICD interrogation report if applicable
Prior cardiac catheterization or stress test results
Known baseline bundle branch block or axis deviation
Step 1: Systematic Rate and Rhythm Assessment
Follow this exact sequence on every ECG before pattern recognition:
Rate Calculation
Regular rhythm: 300 / (number of large boxes between R-R) = rate
Irregular rhythm: count QRS complexes in 10 seconds × 6
Clinical context stated in interpretation (not interpreted in isolation)
Critical findings communicated verbally with time and recipient documented
Serial ECG plan documented if initial ECG non-diagnostic with ongoing symptoms
Lead placement quality assessed (appropriate R-wave progression, no lead reversal signs)
QTc calculated and medication list cross-checked if prolonged
Pacemaker or device presence noted in interpretation if applicable
Guidelines
Never interpret an ECG in clinical isolation — always correlate with the presenting complaint, age, sex, and symptom timeline.
Obtain a 12-lead ECG within 10 minutes of arrival for any patient with chest pain, dyspnea, syncope, or palpitations — this is a CMS core quality measure.
If the first ECG is non-diagnostic but symptoms persist, repeat the ECG every 15-30 minutes — STEMI can evolve from a normal baseline in minutes.
Always obtain right-sided leads (V4R) in inferior STEMI to evaluate for RV involvement — RV infarction contraindicates nitroglycerin and requires volume resuscitation.
A normal ECG does not exclude ACS — sensitivity of a single ECG for acute MI is only 45-60%.
Treat the patient, not the ECG — if clinical suspicion for STEMI is high despite an ambiguous tracing, activate the cath lab and let the interventionalist make the final call.
QTc >500 ms is a medical emergency requiring medication review, electrolyte repletion (Mg2+ ≥2.0, K+ ≥4.0), and continuous telemetry monitoring.
In wide-complex tachycardia of uncertain origin, treat as ventricular tachycardia until proven otherwise — the safest initial approach is always to assume the worst-case diagnosis.
1---2name: interpreting-emergency-ecgs3description: Analyzes 12-lead ECGs for acute findings requiring emergent intervention. Use when reading emergency ECGs, identifying STEMI patterns, or flagging critical arrhythmias.4---56# Interpreting Emergency ECGs78Analyzes 12-lead ECGs for acute findings requiring emergent intervention, using a systematic approach to identify STEMI patterns, life-threatening arrhythmias, and high-risk ECG signatures.910## Why This Skill Exists1112The 12-lead ECG is the single most important initial diagnostic test in acute chest pain evaluation and is required within 10 minutes of ED arrival per ACC/AHA guidelines. STEMI misdiagnosis or delayed cath lab activation carries catastrophic consequences — door-to-balloon time >90 minutes is associated with a 7.5% increase in in-hospital mortality per 30-minute delay. Conversely, false-positive cath lab activations waste resources and expose patients to unnecessary invasive procedures (false activation rates range 10-30% across institutions).1314Beyond ACS, the emergency ECG must be screened for lethal arrhythmias (complete heart block, wide-complex tachycardia), metabolic emergencies (severe hyperkalemia), drug toxicity (sodium channel blockade, QT prolongation), and structural pathology (PE, pericarditis, Brugada). Emergency physicians must interpret ECGs with higher sensitivity than specificity — the cost of a miss far exceeds the cost of a false alarm. This skill provides a systematic, reproducible framework for emergency ECG interpretation.1516---1718## Checkpoint A: Pre-Draft Intake (Mandatory)19201. What is the clinical context (chief complaint, age, sex)? (Default: always interpret in clinical context)212. Is a prior ECG available for comparison? (Default: request from EMR if available)223. What is the time of symptom onset relative to the ECG acquisition? (Default: document both timestamps)234. Is the patient currently symptomatic during this ECG? (Default: document symptom status at time of tracing)245. What medications is the patient taking (digoxin, antiarrhythmics, QT-prolonging agents)? (Default: query medication list)256. Does the patient have a pacemaker or ICD? (Default: document device presence and type)267. What is the patient's potassium level if known? (Default: check point-of-care metabolic panel)2728### Documents to Request2930- Prior ECG tracings (most recent and baseline)31- Current medication list with focus on cardiac and QT-prolonging drugs32- Pacemaker/ICD interrogation report if applicable33- Prior cardiac catheterization or stress test results34- Known baseline bundle branch block or axis deviation3536---3738## Step 1: Systematic Rate and Rhythm Assessment3940Follow this exact sequence on every ECG before pattern recognition:4142### Rate Calculation43- Regular rhythm: 300 / (number of large boxes between R-R) = rate44- Irregular rhythm: count QRS complexes in 10 seconds × 645- Normal: 60-100 bpm | Bradycardia: <60 | Tachycardia: >1004647### Rhythm Determination Checklist481. Is the rhythm regular or irregular?492. Is there a P wave before every QRS?503. Is there a QRS after every P wave?514. Is the PR interval constant?525. Is the QRS narrow (<120 ms) or wide (≥120 ms)?5354### Axis Assessment55- Normal axis: Lead I (+), aVF (+)56- Left axis deviation: Lead I (+), aVF (−) — consider LAFB, LVH, inferior MI57- Right axis deviation: Lead I (−), aVF (+) — consider RVH, PE, lateral MI, LPFB58- Extreme axis: Lead I (−), aVF (−) — consider ventricular rhythm, lead misplacement5960---6162## Step 2: Interval Measurement and Block Identification6364| Interval | Normal | Abnormal | Emergency Significance |65|----------|--------|----------|----------------------|66| PR | 120-200 ms | >200 ms = 1st degree AV block; progressively lengthening = 2nd degree Type I; dropped beats without lengthening = 2nd degree Type II; complete dissociation = 3rd degree | 2nd degree Type II and 3rd degree = emergent pacing |67| QRS | <120 ms | 120-200 ms = BBB or aberrancy; >200 ms = ventricular origin or severe toxicity | New BBB in ACS context = consider STEMI equivalent |68| QTc | <440 ms (M), <460 ms (F) | >500 ms = high risk for Torsades de Pointes | Discontinue offending agents, replete Mg2+ and K+ |6970### Bundle Branch Block Differentiation7172**RBBB (V1 = rSR', V6 = qRS, wide S in I and V6):**73- Commonly benign but new RBBB in acute chest pain = consider PE or RV strain7475**LBBB (V1 = rS or QS, V6 = tall R without Q, I = monomorphic R):**76- New LBBB + symptoms = cath lab activation per Sgarbossa criteria77- **Sgarbossa Criteria (≥3 points = STEMI):**78 - Concordant ST elevation ≥1 mm in leads with positive QRS = 5 points79 - ST depression ≥1 mm in V1-V3 = 3 points80 - Discordant ST elevation ≥5 mm (or use Smith-modified ratio >0.25) = 2 points8182---8384## Step 3: ST Segment and Acute Ischemia Evaluation8586### STEMI Recognition by Territory8788| Territory | Leads with ST Elevation | Culprit Artery |89|-----------|------------------------|----------------|90| Anterior | V1-V4 | LAD |91| Lateral | I, aVL, V5-V6 | LCx or diagonal |92| Inferior | II, III, aVF | RCA (85%) or LCx (15%) |93| Right ventricular | V4R (obtain if inferior STEMI) | Proximal RCA |94| Posterior | V7-V9 (obtain if tall R in V1-V2 with ST depression) | PDA or LCx |9596**STEMI criteria (in ≥2 contiguous leads):**97- ST elevation ≥1 mm in limb leads98- ST elevation ≥2 mm in V2-V3 (men ≥40), ≥2.5 mm V2-V3 (men <40), ≥1.5 mm V2-V3 (women)99100### STEMI Equivalents (require same urgency)101- de Winter T waves: upsloping ST depression at J point with tall symmetric T waves in precordial leads (LAD occlusion)102- Wellens syndrome: deep T-wave inversions or biphasic T waves in V2-V3 (critical LAD stenosis — NOT during pain)103- Hyperacute T waves: tall, broad, symmetric T waves preceding ST elevation (very early STEMI)104- New LBBB with positive Sgarbossa criteria105- Posterior STEMI: ST depression V1-V3 with tall R waves (confirm with V7-V9)106107### Non-STEMI Patterns108- Diffuse ST depression with ST elevation in aVR = left main or severe 3-vessel disease — cardiology emergent consult109- Dynamic T-wave inversions in the same territory = unstable angina or NSTEMI evolution110111---112113## Step 4: Non-ACS Emergency Patterns114115| Pattern | ECG Findings | Emergency Action |116|---------|-------------|------------------|117| Hyperkalemia | Peaked T waves → widened QRS → sine wave → asystole | Calcium gluconate 10 mL of 10% IV over 2-3 min |118| Severe hypokalemia | Prominent U waves, flattened T waves, ST depression | Replete K+ aggressively, cardiac monitoring |119| PE (right heart strain) | S1Q3T3, RBBB, TWI V1-V4, sinus tachycardia, RAD | CTA pulmonary angiography, anticoagulation |120| Pericarditis | Diffuse ST elevation (concave up), PR depression, Spodick sign | NSAIDs + colchicine, rule out myocarditis |121| Brugada Type 1 | Coved ST elevation ≥2 mm in V1-V2 with T-wave inversion | Cardiology consult, avoid triggering drugs, consider ICD |122| Digitalis toxicity | Scooped ST ("Salvador Dali"), PAT with block, bidirectional VT | Digibind (digoxin-specific Fab fragments) |123| Sodium channel blockade (TCA, cocaine) | Wide QRS >100 ms, tall R in aVR >3 mm | Sodium bicarb boluses 1-2 mEq/kg IV |124| WPW | Short PR, delta wave, wide QRS | If AFib with WPW: procainamide or cardioversion; AVOID AV nodal blockers |125126---127128## Step 5: Documentation and Communication129130### ECG Interpretation Documentation Template131132```133ECG Time: [HH:MM] | Clinical Context: [chief complaint, age, sex]134Rate: [ ] bpm | Rhythm: [regular/irregular, sinus/non-sinus]135Axis: [normal/LAD/RAD] | PR: [ ] ms | QRS: [ ] ms | QTc: [ ] ms136ST Changes: [describe by lead group]137T-Wave Changes: [describe]138Comparison to Prior: [new/unchanged/improved]139Interpretation: [final impression]140Action Taken: [cath lab activation / serial ECG ordered / cardiology consulted / none needed]141```142143### Critical Value Communication144- STEMI or STEMI-equivalent: verbal notification to attending + cath lab activation within 3 minutes of identification145- New complete heart block or wide-complex tachycardia: immediate bedside physician notification146- QTc >500 ms: alert provider, review medication list, place on telemetry147- Hyperkalemia pattern: immediate point-of-care potassium + treatment protocol148149---150151## Checkpoint B: Post-Draft Alignment (Mandatory)1521531. Was the ECG interpreted using a systematic approach (rate → rhythm → axis → intervals → ST/T)?1542. Were STEMI criteria applied correctly with contiguous lead requirements and sex-specific thresholds?1553. Were STEMI equivalents (de Winter, Wellens, posterior MI) actively screened for?1564. Were non-ACS emergencies (hyperkalemia, PE, toxicity) considered in the differential?1575. Was the interpretation communicated to the treating provider with appropriate urgency?158159---160161## Quality Audit162163- [ ] ECG acquisition time documented and within 10 minutes of arrival for chest pain164- [ ] Rate, rhythm, axis, and all intervals (PR, QRS, QTc) explicitly stated165- [ ] ST segment changes described by lead group with millimeter measurements166- [ ] STEMI criteria evaluated using sex-and-age-appropriate thresholds167- [ ] STEMI equivalents actively screened (de Winter, Wellens, hyperacute T, posterior MI)168- [ ] Comparison to prior ECG documented (or "no prior available")169- [ ] Non-ACS emergency patterns screened (hyperkalemia, PE, WPW, toxicity)170- [ ] Clinical context stated in interpretation (not interpreted in isolation)171- [ ] Critical findings communicated verbally with time and recipient documented172- [ ] Serial ECG plan documented if initial ECG non-diagnostic with ongoing symptoms173- [ ] Lead placement quality assessed (appropriate R-wave progression, no lead reversal signs)174- [ ] QTc calculated and medication list cross-checked if prolonged175- [ ] Pacemaker or device presence noted in interpretation if applicable176177---178179## Guidelines1801811. Never interpret an ECG in clinical isolation — always correlate with the presenting complaint, age, sex, and symptom timeline.1822. Obtain a 12-lead ECG within 10 minutes of arrival for any patient with chest pain, dyspnea, syncope, or palpitations — this is a CMS core quality measure.1833. If the first ECG is non-diagnostic but symptoms persist, repeat the ECG every 15-30 minutes — STEMI can evolve from a normal baseline in minutes.1844. Always obtain right-sided leads (V4R) in inferior STEMI to evaluate for RV involvement — RV infarction contraindicates nitroglycerin and requires volume resuscitation.1855. A normal ECG does not exclude ACS — sensitivity of a single ECG for acute MI is only 45-60%.1866. Treat the patient, not the ECG — if clinical suspicion for STEMI is high despite an ambiguous tracing, activate the cath lab and let the interventionalist make the final call.1877. QTc >500 ms is a medical emergency requiring medication review, electrolyte repletion (Mg2+ ≥2.0, K+ ≥4.0), and continuous telemetry monitoring.1888. In wide-complex tachycardia of uncertain origin, treat as ventricular tachycardia until proven otherwise — the safest initial approach is always to assume the worst-case diagnosis.
Run npx skillmds@latest add lev-os/interpreting-emergency-ecgs in your terminal (requires Node.js), paste this page's agent-chat prompt into Claude, Cursor, or any MCP-connected agent, or download the SKILL.md file and copy it into your agent's skills directory.
Analyzes 12-lead ECGs for acute findings requiring emergent intervention. Use when reading emergency ECGs, identifying STEMI patterns, or flagging critical arrhythmias. It is listed under Coding & Dev Tools on SkillMD.
This skill has not completed SkillMD's automated safety review yet. Capability flags: docs only. SkillMD never runs a skill's scripts for you; review the SKILL.md before installing.
This skill is tagged as working with Claude Code, Claude.ai, OpenAI Codex. SKILL.md is an open format, so most agents that read a skills directory can load it too.
Yes. Installing skills from SkillMD is free, and the skill stays under its author's original license.
lev-os (@lev-os) published this skill. Their other Agent Skills are listed on their SkillMD profile.