AVBG Free

Identifier-free modeClinical values are calculated locally. No patient record is created.

📲 Install AVBG for offline use
Dr. Amir Fadhel
About AVBG
Dr. Amir Fadhel — MBChB, FICMS-AIC
AVBG (Arterial–Venous Blood Gas Calculator) was designed by Dr. Amir Fadhel, Anesthesiologist and Intensive Care Specialist, as a physiology-first clinical reasoning tool for bedside use.

Dr. Fadhel holds an MBChB from the University of Mosul (2002) and the Iraqi Board in Anesthesia & Intensive Care (FICMS-AIC, 2022). His clinical background includes extended frontline experience in emergency and critical care medicine, including work at George Washington University Hospital, Washington, D.C. (2009–2016), followed by advanced anesthesia and ICU practice in Iraq.

AVBG was developed to address a common gap in clinical software: tools that calculate values without explaining physiological meaning or respecting clinical context. The system integrates arterial and venous blood gas interpretation, acid–base analysis, oxygenation indices, delta analysis, and contextual clinical inputs while preserving clinician judgment.

AVBG is part of a broader body of clinician-led work developed under the ENKI-CLINICAL initiative, which focuses on transparent, safety-bounded clinical systems grounded in core physiology. Other ENKI-CLINICAL projects include decision-support and planning tools in areas such as renal replacement therapy, antimicrobial stewardship, infusion management, and ICU nutrition.

Across all ENKI-CLINICAL work, the guiding principle remains the same: clinical reasoning must remain visible, explainable, and owned by the clinician.
Clinical Contributors
Asst. Prof. Waleed Al Ansari
Academic Intensivist — Demo tester & conceptual contributor
Challenged the assumption that the tool should only accept arterial samples. His insight — that any blood gas strip deserves interpretation regardless of origin — drove the development of the CalVI sample identity engine. ABG became AVBG because of that conversation.
Dr. Ali Al Shafei
Intensivist, Najaf Teaching Hospital — Demo tester & clinical contributor
His bedside feedback shaped three features: the anonymous sample comparison (two samples, side by side); the O₂ Transport module (full Fick chain from CaO₂ to tissue delivery); and the live HCO₃⁻ preview (expected bicarbonate from pH + PaCO₂ via Henderson-Hasselbalch, shown before you enter the value).
Support AVBG Development
AVBG is free to use, with no ads and no paywalled features. If it has been useful to you and you'd like to support its continued development, clinical review, and maintenance, reach out to official ENKI Support on WhatsApp — we'll be glad to hear from you either way. Support is entirely voluntary and optional; it doesn't unlock anything, and it isn't a payment for clinical services.
تطبيق AVBG مجاني للاستخدام بالكامل، دون إعلانات ودون أي ميزات مدفوعة. إذا وجدت التطبيق مفيداً وترغب في دعم تطويره المستمر ومراجعته السريرية وصيانته، تواصل مع دعم ENKI الرسمي عبر واتساب — يسعدنا التواصل معك في الحالتين. الدعم اختياري بالكامل، ولا يفتح أي ميزات إضافية، ولا يُعد مقابلاً لخدمة طبية.
📱 Support AVBG Development via WhatsApp
Need Patient Records and Professional Workflow Tools?
AVBG Free includes the complete blood-gas calculation and clinical interpretation engine — ABG/VBG analysis, O₂ Transport, Ventilation Mode Intelligence, ICU Respiratory Mechanics, and anonymous session-only comparison. Nothing clinically essential is held back from this edition.

AVBG Professional adds optional workflow features such as saved case records, report management and other professional tools. A seven-day trial is available.
🔎 Explore AVBG Professional
SEPARATE ENKI LEARNING APP

ABG Tutor

Master arterial blood gas interpretation through 75 progressive cases across 5 difficulty levels. Each level requires 80% accuracy to advance.

Open ABG Tutor
AVBG Tutor — Master Reference Edition
Systematic ABG & VBG Interpretation Framework
Dr. Amir Fadhel
Specialist in Anesthesiology & Critical Care
This reference panel documents the equations and interpretation logic used by the AVBG Calculator. It is provided for transparency and does not affect calculations.

🧪 Anion Gap (AG)

AG = Na⁺ − (Cl⁻ + HCO₃⁻)

Normal reference: 8–12 mmol/L (albumin ≈ 4 g/dL)

  • High AG → unmeasured acids → HAGMA
  • Normal AG → bicarbonate loss / renal acid retention → NAGMA

🧪 Corrected Anion Gap (Albumin-Adjusted)

Corrected AG = AG + 2.5 × (4 − Albumin)
  • Accounts for hypoalbuminemia
  • Advisory only — does not drive diagnosis

🫁 Winter's Formula (Metabolic Acidosis)

Expected PaCO₂ = (1.5 × HCO₃⁻) + 8 ± 2

Use only when HCO₃⁻ is low

🫁 Respiratory Compensation in Metabolic Alkalosis

Expected PaCO₂ = 40 + 0.7 × (HCO₃⁻ − 24) ± 5

🧮 Adjusted Bicarbonate (Delta-Gap Implementation)

Adjusted HCO₃⁻ = HCO₃⁻ + (AG − 12)

Interpretation:

  • 18–30 → Pure HAGMA
  • <18 → HAGMA + NAGMA
  • >30 → HAGMA + metabolic alkalosis

Represents delta-delta analysis in a clinically direct form.

📊 Delta Ratio

Delta Ratio = (AG − 12) ÷ (24 − HCO₃⁻)
  • <1 → HAGMA + NAGMA
  • 1–2 → Pure HAGMA
  • >2 → Metabolic alkalosis / chronic hypercapnia

🫁 Respiratory Acidosis Compensation

  • Acute: PaCO₂ ↑10 → HCO₃⁻ ↑1
  • Chronic: PaCO₂ ↑10 → HCO₃⁻ ↑3–4

🫁 Respiratory Alkalosis Compensation

  • Acute: PaCO₂ ↓10 → HCO₃⁻ ↓2
  • Chronic: PaCO₂ ↓10 → HCO₃⁻ ↓4–5

🧬 VBG ↔ ABG Logic

  • VBG pH ≈ ABG − 0.03
  • PvCO₂ ≈ PaCO₂ + 4–6 mmHg
  • Oxygenation indices are ABG-only

🧠 Interpretation Hierarchy

  1. Anion Gap
  2. Adjusted HCO₃⁻
  3. Delta Ratio
  4. Compensation formulas
  5. Corrected AG (context only)

⚠️ Notes

  • Delta-delta is implemented via Adjusted HCO₃⁻
  • Corrected AG is contextual, not diagnostic
  • This tool is for clinical decision support
ENKI CLINICAL / BLOOD GAS INTERPRETATION

AVBG Calculator

Complete ABG, VBG, acid–base, oxygenation and ICU physiology engine.

FREE CLINICAL EDITIONNO PATIENT IDENTIFIERSLOCAL PROCESSING
⚡ Quick Clinical Presets & Teaching Examples ▼ Click to expand
💡 Teaching Tool: Load realistic ICU cases instantly for demonstration, practice, and learning. Perfect for rounds, simulation, and self-study.
📌 How to use: Click any case → Auto-loads & analyzes → Scroll down to see full interpretation ⚡

📚 Basic Teaching Examples

🫁 Respiratory Failure Cases

🫘 CRRT / Renal Failure Cases (CRRT Triggers!)

🔄 Mixed Acid-Base Disorders

⚡ Shock & Hemodynamic Crisis

🏥 Post-Operative Complications

🎯 Special & Rare Cases

Clinical Parameters — No Patient Identifiers
Enter only the clinical variables required for calculation. Do not enter a patient name, record number, facility, location or other identifying information.

Clinical Context / Patient History

Chronic Respiratory Disease
Acute Respiratory Failure Causes
Neuromuscular Weakness / Central Depression
Renal / Metabolic / Endocrine Disorders
Shock / Cardiac Conditions
Toxicology / Infectious / Hematology & Oncology
Peri-Operative / Post-Operative State
Insert Values
Advanced Inputs & Hemodynamics
Ketones
🫁 ICU Respiratory Mechanics (Advanced Ventilation Parameters)
🩸 O₂ Transport & Tissue Oxygenation (Hb + Venous required)
Arterial values (pH, PaCO₂, PaO₂, SaO₂, FiO₂) are read from the main ABG fields above. Height and weight from Clinical Parameters auto-calculate BSA and CI.
Vasopressors & Inotropes — Documentation
Optional — used for calculation and anonymous current-report context; these entries are not saved as a patient record. Noradrenaline >0.25 µg/kg/min flags refractory shock.
Live Preview
Enter values to begin…
Delta Ratio Visual
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0.5
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Actions
🔬 Anonymous Sample Comparison (session only — nothing is saved)