Cardiac Index · CI Calculator

Cardiac Index Calculator

Estimate CI from cardiac output and body surface area · Assess hemodynamic status

Hemodynamics
L/min
Patient Demographics
cm
kg
Body Surface Area (BSA) is calculated using the DuBois formula: 0.007184 × Height(cm)0.725 × Weight(kg)0.425
Cardiac Index Results
✅ Normal (2.5 – 4.0)
Cardiac Index (CI)
— L/min/m²
Body Surface Area
— m²
Cardiac Output
— L/min
Classification
—
📋 Clinical Recommendation
Enter the measurements and click Calculate to see the Cardiac Index and classification.
📊 Cardiac Index Interpretation
CI (L/min/m²)
Classification
Clinical Significance
< 2.0
Critical (Cardiogenic Shock)
Immediate intervention required
2.0 – 2.4
Low
Decreased cardiac output
2.5 – 4.0
Normal
Adequate perfusion
> 4.0
High (Hyperdynamic)
Sepsis, hyperthyroidism, etc.

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Creator & Maintainer

Image of Faiq Ur Rahman, CEO & Founder Toolraxy

Faiq Ur Rahman

Founder & CEO, Toolraxy

Faiq Ur Rahman is a web designer, digital product developer, and founder of Toolraxy, a growing platform of web-based calculators and utility tools. He specializes in building structured, user-friendly tools focused on health, finance, productivity, and everyday problem-solving.

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Introduction

In critical care and cardiology, the Cardiac Index (CI) is a fundamental hemodynamic parameter that adjusts cardiac output for body size, providing a more accurate assessment of tissue perfusion than cardiac output alone. While cardiac output (CO) measures the total volume of blood the heart pumps per minute, CI normalizes this value to body surface area (BSA), enabling meaningful comparisons between patients of different sizes. This index is essential for evaluating whether the heart is delivering adequate blood flow to meet the metabolic demands of the body.

The Cardiac Index Calculator estimates CI using the standard formula, cardiac output divided by body surface area. Body surface area is calculated using the validated DuBois formula, which accounts for both height and weight. The tool classifies results into four categories: Normal (2.5–4.0 L/min/m²), Low (2.0–2.4), Critical (< 2.0), or High (> 4.0), with tailored clinical recommendations for each. This calculator is designed for healthcare professionals, medical students, and anyone involved in hemodynamic monitoring.

 

How to Use the Cardiac Index Calculator

  1. Enter the Cardiac Output (CO) in liters per minute (L/min).

  2. Enter the patient’s height and select the unit (cm or in).

  3. Enter the patient’s weight and select the unit (kg or lbs).

  4. The Body Surface Area (BSA) is calculated automatically using the DuBois formula.

  5. Use the quick example buttons to test common clinical scenarios.

  6. Click Calculate (or simply wait — results update automatically).

  7. View your Cardiac Index (CI) in L/min/m².

  8. Check your Classification (Critical, Low, Normal, or High) with a color-coded badge.

  9. Review the Clinical Recommendation for guidance on next steps.

  10. Copy, share, or embed your results using the buttons below.

 

How the Cardiac Index Calculator Formula Works

The calculator uses two standard formulas to estimate Cardiac Index from cardiac output and patient demographics.

Body Surface Area (BSA) — DuBois Formula:
BSA (m²) = 0.007184 × Height(cm)^0.725 × Weight(kg)^0.425

Cardiac Index (CI) Formula:
CI (L/min/m²) = Cardiac Output (L/min) ÷ BSA (m²)

Normal Range: 2.5 – 4.0 L/min/m²

Interpretation:

  • < 2.0 L/min/m²: Critical – cardiogenic shock

  • 2.0 – 2.4 L/min/m²: Low – decreased cardiac output

  • 2.5 – 4.0 L/min/m²: Normal – dequate perfusion

  • > 4.0 L/min/m²: High – hyperdynamic state (sepsis, hyperthyroidism)

The DuBois formula is the most widely used method for calculating BSA in clinical practice, providing reliable estimates for both adults and children.

 

Worked Example

A 65-year-old patient in the ICU has a cardiac output of 4.5 L/min measured by thermodilution. The patient’s height is 175 cm and weight is 80 kg.

Step 1 — Calculate Body Surface Area:
BSA = 0.007184 × 175^0.725 × 80^0.425
BSA = 0.007184 × 41.8 × 6.3 = 1.94 m²

Step 2 — Calculate Cardiac Index:
CI = 4.5 ÷ 1.94 = 2.32 L/min/m²

Step 3 — Classification:
CI of 2.32 falls in the Low range (2.0 – 2.4).

Step 4 — Recommendation:
“Cardiac Index is below normal range (2.0 – 2.4 L/min/m²). This may indicate decreased cardiac output. Evaluate for underlying causes such as heart failure, hypovolemia, or sepsis. Consider hemodynamic optimization and further investigation.”

The clinician notes the low CI and begins evaluating for potential causes, including fluid responsiveness and inotropic support.

Frequently Asked Questions

What is the Cardiac Index Calculator and how does it work?

The Cardiac Index Calculator estimates CI from cardiac output and body surface area using the DuBois formula for BSA. It divides cardiac output by BSA to produce CI in L/min/m², then classifies the result as Critical, Low, Normal, or High with clinical recommendations.

 

What is a normal Cardiac Index?

A normal Cardiac Index is between 2.5 and 4.0 L/min/m². This indicates adequate cardiac output for the patient’s body size and suggests normal perfusion of tissues.

 

How is Cardiac Index different from Cardiac Output?

Cardiac Output (CO) is the total volume of blood pumped per minute (L/min), while Cardiac Index (CI) adjusts CO for body surface area (L/min/m²). CI provides a size-corrected measure, enabling meaningful comparisons between patients of different sizes.

 

What is the DuBois formula for BSA?

The DuBois formula is the most widely used method for calculating BSA: BSA (m²) = 0.007184 × Height(cm)^0.725 × Weight(kg)^0.425. It was developed in 1916 and remains the clinical standard.

 

What does a low Cardiac Index indicate?

A low CI (2.0–2.4 L/min/m²) indicates decreased cardiac output relative to body size. This may be seen in heart failure, hypovolemia, or early cardiogenic shock. Further evaluation is needed to identify the underlying cause.

 

What does a high Cardiac Index indicate?

A high CI (> 4.0 L/min/m²) indicates a hyperdynamic state. Common causes include sepsis, hyperthyroidism, anemia, liver disease, and pregnancy. Clinical context is essential for interpretation.

 

What does a critical Cardiac Index (< 2.0) mean?

A CI below 2.0 L/min/m² is critical and consistent with cardiogenic shock. This requires immediate intervention, including inotropic support, fluid management, and mechanical circulatory support if needed.

 

Can the Cardiac Index Calculator be used in pediatrics?

Yes, the calculator can be used for pediatric patients. However, normal CI ranges may differ for children, and clinical judgment is required. The DuBois formula is valid across most age groups.

 

How is Cardiac Index measured in clinical practice?

CI is typically derived from cardiac output measured by thermodilution (using a pulmonary artery catheter), echocardiography, or other non-invasive monitoring techniques. The calculator uses the measured CO to compute CI.

 

What is the clinical significance of Cardiac Index?

CI is a key parameter in assessing hemodynamic status, guiding fluid resuscitation, and evaluating response to inotropic or vasopressor therapy. It helps clinicians optimize tissue perfusion and is a core metric in critical care.

Medical Disclaimer

This Cardiac Index Calculator is provided for educational and informational purposes only. It does not constitute medical advice, diagnosis, or treatment recommendations. The results are estimates based on standard formulas and the values you enter, but they should not replace professional medical evaluation, including physical examination, comprehensive hemodynamic monitoring, and personalized care. Cardiac Index interpretation requires clinical context and should be correlated with other hemodynamic parameters, clinical signs, and laboratory data. Always consult with a qualified healthcare provider regarding clinical decisions. No calculator can substitute for proper medical assessment and personalized care.

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