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Risk Ratio Calculator

Calculate risk ratios from event counts in exposed and control populations. Determine the attributable risk, attributable fraction, and population attributable fraction — key measures for understanding how much disease burden an exposure explains in epidemiological research.

Risk Ratio Calculator — Aperçu du Ratio en Direct
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        What is a Risk Ratio?

        The risk ratio (also called the relative risk) is the ratio of the event probability in the exposed group to the event probability in the unexposed group. It is the most direct measure of how much an exposure multiplies (or reduces) the risk of an outcome. An RR of 3.0 means exposed individuals have three times the risk of the outcome compared to unexposed individuals.

        Beyond the basic risk ratio, epidemiologists use attributable risk (AR) — the absolute difference in event rates between groups — and the attributable fraction (AF) — the proportion of cases in the exposed group that can be attributed to the exposure. The population attributable fraction (PAF) extends this to the entire population, estimating how much disease would be prevented if the exposure were eliminated entirely.

        Formules et Équations utilisées

        Ce calculateur s'appuie sur 5 équations fondamentales :

        1 Risk Ratio ▼
        RR = Incidence_exposed / Incidence_unexposed

        Exposed rate: 15 per 1000. Unexposed rate: 5 per 1000. RR = 15/5 = 3.0.

        2 Attributable Risk ▼
        AR = Incidence_exposed - Incidence_unexposed

        AR = 15/1000 - 5/1000 = 10/1000. The exposure accounts for 10 extra cases per 1000.

        3 Population Attributable Fraction ▼
        PAF = P_exposed × (RR - 1) / (1 + P_exposed × (RR - 1))

        If 30% of population exposed and RR = 3: PAF = 0.3×2 / (1+0.3×2) = 0.375 = 37.5%.

        Explore all calculation options on the Calculateur de Ratio home page.

        Comment utiliser ce calculateur

        Pour utiliser ce Calculateur de Ratio, suivez ces 3 étapes :

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        Saisir les Valeurs

        Saisissez les valeurs de ratio connues dans les champs. Laissez un champ vide — c'est la valeur manquante que le calculateur va chercher à résoudre.

        2

        Choisir le Mode

        Sélectionnez le mode de ratio — Résoudre, Simplifier ou Mettre à l'échelle. Chaque mode applique des formules différentes à vos valeurs.

        3

        Obtenir les Résultats

        Cliquez sur Calculer. L'écran de résultats affiche la réponse avec une barre de ratio interactive, un diagramme circulaire et le détail des calculs.

        Exemples Pratiques et Solutions Étape par Étape

        Voici 3 exemples de calculs résolus avec les étapes détaillées grâce à ce calculateur :

        Saisie 1 Disease rates: 20/1000 exposed vs 5/1000 unexposed
        1 Exposed risk (R_e) = 20 ÷ 1,000 = 0.020 (2.0%).
        2 Unexposed risk (R_u) = 5 ÷ 1,000 = 0.005 (0.5%).
        3 Risk Ratio = R_e / R_u = 0.020 / 0.005 = 4.00.
        ✓ Risk Ratio is 4.00
        Saisie 2 Calculate PAF: 40% exposed, RR = 2.5
        1 Population Attributable Fraction formula: PAF = [P_e × (RR - 1)] / [1 + P_e × (RR - 1)].
        2 Numerator: 0.40 × (2.5 - 1) = 0.40 × 1.5 = 0.60.
        3 Denominator: 1 + 0.60 = 1.60.
        4 PAF: 0.60 / 1.60 = 0.375 (37.5%).
        ✓ PAF is 37.5% of cases attributable to exposure
        Saisie 3 Protective factor: vaccinated risk 3%, unvaccinated 12%
        1 Vaccinated Risk (R_v) = 0.03.
        2 Unvaccinated Risk (R_u) = 0.12.
        3 Risk Ratio = 0.03 ÷ 0.12 = 0.25 (75% efficacy).
        ✓ Risk Ratio is 0.25 (75% Protection)

        Foire Aux Questions

        What is the difference between risk ratio and rate ratio? ▼

        Risk ratio compares cumulative incidence proportions (events ÷ population at risk). Rate ratio compares incidence rates (events ÷ person-time at risk). Risk ratios work for fixed-period studies; rate ratios handle variable follow-up. For short studies with little loss to follow-up, they are approximately equal.

        What is attributable risk? ▼

        Attributable risk (AR) = Risk in exposed − Risk in unexposed. It measures the absolute excess risk due to the exposure. If exposed risk is 15% and unexposed risk is 5%, AR = 10 percentage points. This means 10 extra cases per 100 exposed individuals are attributable to the exposure.

        What is the attributable fraction? ▼

        Attributable fraction (AF) = (Risk_exposed − Risk_unexposed) ÷ Risk_exposed = (RR − 1) ÷ RR. It represents the proportion of cases among the exposed that can be attributed to the exposure. AF of 0.75 means 75% of cases in the exposed group would not have occurred without the exposure.

        What is population attributable fraction (PAF)? ▼

        PAF estimates the proportion of all cases in the entire population attributable to the exposure: PAF = P_e × (RR − 1) ÷ [P_e × (RR − 1) + 1], where P_e is the prevalence of exposure. A PAF of 25% means eliminating the exposure would prevent 25% of all cases in the population.

        Can risk ratio be negative? ▼

        No. Risk ratio is a ratio of two non-negative probabilities and ranges from 0 to infinity. RR = 0 would mean zero events in the exposed group. RR < 1 indicates reduced risk (protective effect). The concept of 'negative risk' does not apply to ratios.

        How do I calculate risk ratio from a 2×2 table? ▼

        RR = (a/(a+b)) ÷ (c/(c+d)), where a = exposed events, b = exposed non-events, c = unexposed events, d = unexposed non-events. Example: a=30, b=470, c=10, d=490: RR = (30/500) ÷ (10/500) = 0.06/0.02 = 3.0.

        Is a higher risk ratio always worse? ▼

        It depends on the outcome. RR = 3.0 for disease risk means the exposure triples disease risk (bad). RR = 3.0 for treatment success means the treatment triples the chance of success (good). The interpretation depends on whether the outcome is desirable or undesirable.

        How does confounding affect the risk ratio? ▼

        Confounders can inflate or deflate the observed RR. For example, if smokers also drink more alcohol, the crude RR for smoking and liver disease will be confounded by alcohol use. Adjusted RR (from stratification or regression) removes confounding to estimate the independent effect of the exposure.

        What is the prevented fraction? ▼

        When an exposure is protective (RR < 1), the prevented fraction = 1 − RR. It represents the proportion of potential cases prevented by the exposure. For a vaccine with RR = 0.10, the prevented fraction is 90% — the vaccine prevents 90% of cases that would have otherwise occurred.

        Can I calculate risk ratio for continuous outcomes? ▼

        No. Risk ratio is defined for binary (yes/no) outcomes. For continuous outcomes (blood pressure, weight, test scores), use mean difference, standardized mean difference, or ratio of means. Risk ratio specifically compares the probability of a dichotomous event between groups.

        Comprendre les Ratios

        Qu'est-ce qu'un ratio ?

        Un ratio est une comparaison entre deux ou plusieurs quantités indiquant leur rapport de grandeur. Écrit sous la forme A : B, cela se traduit par 'pour chaque unité de A, il y a B unités de B'. Par exemple, un ratio 3 : 4 signifie que pour 3 parts de A, on a 4 parts de B. Les ratios servent en cuisine, construction, finance, science et au quotidien.

        Comment résoudre une proportion ?

        Une proportion est une égalité entre deux ratios : A : B = C : D. Pour trouver le terme manquant, utilisez le produit en croix. Si D est l'inconnue : D = (B × C) / A. Ceci s'explique par le fait que dans des ratios équivalents, les produits en diagonale sont égaux : A × D = B × C. Notre solveur résout cela instantanément : saisissez 3 valeurs et il calcule la quatrième.

        Comment simplifier un ratio ?

        Pour simplifier un ratio, trouvez le Plus Grand Commun Diviseur (PGCD) des deux nombres, puis divisez chacun d'eux par ce diviseur. Exemple : 24 : 36 — le PGCD de 24 et 36 est 12. 24 ÷ 12 = 2 et 36 ÷ 12 = 3. Le ratio simplifié est 2 : 3. Notre simplificateur trouve le PGCD et réduit le ratio automatiquement.

        Qu'est-ce que le changement d'échelle d'un ratio et quand sert-il ?

        Changer l'échelle d'un ratio signifie multiplier ses deux termes par un même nombre afin de créer un ratio équivalent, plus grand ou plus petit. Par exemple, un ratio de 2 : 5 mis à l'échelle par 3 donne 6 : 15. Cela s'applique pour adapter les ingrédients d'une recette (double ou triple), dessiner des plans de construction à l'échelle, ou modifier des volumes de liquides.

        Quelle est la différence entre un ratio et une fraction ?

        Un ratio A : B compare deux quantités entre elles (rapport part-part), tandis qu'une fraction A/B représente généralement une proportion d'un tout (rapport part-tout). Cependant, on peut modéliser tout ratio sous forme de fraction : 3 : 4 équivaut à 3/4 = 0,75. La principale différence réside dans le contexte d'utilisation.