ENKI LEARNING · ORIGINAL APP
Interpret. Explain. Advance.
Clinician-designed learning by Dr. Amir Fadhel
PROGRESSIVE BLOOD-GAS REASONING
Work through 75 structured cases with a knowledge module at every level. Reach 80% accuracy to move from first principles to mixed disorders.
YOUR LEARNING PATH
DAILY PRACTICE
A new case rotates each day.
FINAL CHALLENGE
100 advanced cases after the five-level pathway.
REFERENCE
A staged guide to screening, compensation, and advanced tools—with the clinical gates that decide when each equation belongs.
ABG Tutor is the original ENKI learning app: free to use, focused on deliberate practice, and built without an account wall.
No account, patient record, analytics profile, or email collection. Progress is saved only in this browser on this device. Clearing site data removes it.
ABOUT THE EDUCATOR
Anesthesiology & Critical Care · Medical Education
ABG Tutor is an educational simulator. It does not provide patient-specific advice or replace clinical supervision.
Normal Range: 7.35 - 7.45
WHEN TO USE: Always - first step in every ABG
Classification:
WHEN TO USE: After pH classification
Method: Determine which direction HCO₃ and PaCO₂ move the pH
Equation: AG = Na − (Cl + HCO₃)
Corrected AG: AG + 2.5 × (4 − albumin)
Normal: 8-12 mEq/L (with albumin 4 g/dL)
WHEN TO USE: When metabolic acidosis is present (HCO₃ < 22)
⛔ DO NOT USE: In metabolic alkalosis, pure respiratory disorders, or normal HCO₃
Classification:
Equation: Expected PaCO₂ = 1.5 × HCO₃ + 8 ± 2
STRICT GATE - WHEN TO USE: ONLY in metabolic acidosis (low HCO₃)
⛔ DO NOT USE: In metabolic alkalosis, respiratory disorders, or normal HCO₃
Purpose: Assess respiratory compensation adequacy for metabolic acidosis
Interpretation:
Equation: Expected PaCO₂ = 40 + 0.7 × (HCO₃ − 24) ± 5
STRICT GATE - WHEN TO USE: ONLY in metabolic alkalosis (high HCO₃)
⛔ DO NOT USE: In metabolic acidosis, respiratory disorders, or normal HCO₃
Interpretation:
Acute: For every 10 mmHg ↑ PaCO₂ → HCO₃ ↑ 1 mEq/L
Chronic: For every 10 mmHg ↑ PaCO₂ → HCO₃ ↑ 3-4 mEq/L
WHEN TO USE: When respiratory acidosis is the primary disorder (high PaCO₂)
Interpretation:
Note: "Concomitant" is used here because the metabolic disorder exists independently, not as compensation
Acute: For every 10 mmHg ↓ PaCO₂ → HCO₃ ↓ 2 mEq/L
Chronic: For every 10 mmHg ↓ PaCO₂ → HCO₃ ↓ 4-5 mEq/L
WHEN TO USE: When respiratory alkalosis is the primary disorder (low PaCO₂)
Interpretation:
Equation: Adjusted HCO₃ = HCO₃ + (AG − 12)
STRICT GATE - WHEN TO USE: ONLY when HAGMA is confirmed (AG > 12 AND metabolic acidosis present)
⛔ DO NOT USE: In NAGMA, metabolic alkalosis, respiratory disorders, or normal AG
Purpose: Detect hidden metabolic disorders beneath HAGMA
Interpretation:
Clinical Context: This reveals metabolic disorders that would exist if the HAGMA were corrected
Equation: Delta Ratio = (AG − 12) ÷ (24 − HCO₃)
STRICT GATE - WHEN TO USE: ONLY when HAGMA is confirmed (AG > 12 AND metabolic acidosis present)
⛔ DO NOT USE: In NAGMA, metabolic alkalosis, respiratory disorders, or normal AG
Purpose: Pattern analysis of HAGMA to detect mixed metabolic disorders
Interpretation:
Complementary Tool: Delta Ratio and Adjusted HCO₃ should yield consistent conclusions
Answer 5 questions to assess your ABG interpretation skills.
We'll unlock the appropriate levels based on your performance.
Click below to begin the case presentation
💡 Pro Tip
Want to understand the theory before testing your skills? Click "Learn This Level" to read the knowledge module first, or jump straight into cases if you're ready!
100 advanced mastery cases
Final Score:
You've conquered 100 challenging ABG cases!