Skip to content
cardio.webdr
ToolsSpecialtiesEchoHeart sounds
ToolsSpecialtiesEchoHeart soundsFavoritesPrivate notes
cardio.webdr

Clinical clarity, in seconds. Built for focused decisions—not data collection.

Patient inputs stay on this device.
ExploreAll toolsSpecialtiesEchocardiographyHeart sounds
Your workspaceFavoritesPrivate notesCalculation historyOffline access
PlatformAboutFAQDevelopersFeedbackContact
© 2026 CardioWebdr Clinical support, not a substitute for judgment.PrivacyTermsStorageSupportReport an issue
All tools/Cardiopulmonary Function Assessment Scores (CPET)
Interactive worksheet4 clinical inputsPatient data not stored

Wasserman Algorithm Index Calculator

Wasserman Algorithm Index: Explanation and Clinical Context The Wasserman Algorithm Index is a clinical tool used to evaluate cardiopulmonary exercise capacity relative to predicted values based on age and sex. It incorporates measured VO2 peak during exercise testing, resting heart rate, and demographic variables to provide a percentage of predicted maximal oxygen uptake. A value >80% of predicted is generally consi

Interactive worksheet

Clinical inputs

0/4 filled
Inputs stay on this device
Active structured worksheetActive local worksheet: mapped inputs can be completed, validated, copied, saved, and exported on this device. No numerical score is asserted unless its formula is independently reproducible.
Clinical contextWhy this tool matters and how to interpret it

Understand the result,
not just the number.

Wasserman Algorithm Index: Explanation and Clinical Context The Wasserman Algorithm Index is a clinical tool used to evaluate cardiopulmonary exercise capacity relative to predicted values based on age and sex. It incorporates measured VO2 peak during exercise testing, resting heart rate, and demographic variables to provide a percentage of predicted maximal oxygen uptake. A value >80% of predicted is generally considered normal, whereas lower percentages indicate impaired cardiopulmonary fitness, which may reflect underlying cardiovascular or pulmonary disease.

This index aids clinicians in exercise prescription, functional assessment, and risk stratification in patients with cardiac or pulmonary conditions.

Evidence & references1 primary source mapped
  1. Source 1

    Wasserman K, Hansen JE, Sue DY, Casaburi R, Whipp BJ. Principles of Exercise Testing and Interpretation. 4th edition. Philadelphia: Lippincott Williams & Wilkins; 2005.

Clinical discussionModerated, tool-specific conversation

Loading discussion…

Moderated before publishingNever include patient identifiers.

Workspace mode

Structured worksheet

Active local worksheet: mapped inputs can be completed, validated, copied, saved, and exported on this device. No numerical score is asserted unless its formula is independently reproducible.

On this pageWorksheet Clinical context References Discussion

Privacy by default

Inputs, results, favorites, and notes remain in your browser unless you explicitly export them.

Privacy details
Report formula or content issue
Continue exploring

Related clinical tools

More in this specialty
Interactive worksheet

VO2/VE Ratio Index Calculator

Cardiopulmonary Function Assessment Scores (CPET)
Interactive worksheet

PETCO2 at AT Index Calculator

Cardiopulmonary Function Assessment Scores (CPET)
Interactive worksheet

Weber Classification (CPET Functional Class) Calculator

Cardiopulmonary Function Assessment Scores (CPET)
Interactive worksheet

Exercise Oscillatory Ventilation (EOV) Index Calculator

Cardiopulmonary Function Assessment Scores (CPET)
Clinical structure and calculation context point directly to Source 1; additional primary references remain listed for auditability.