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Hazard Ratio Calculator

Calculate and interpret hazard ratios from survival analysis data. Enter event counts and time-at-risk for treatment and control groups to determine whether an intervention reduces or increases the rate of an outcome — essential for clinical trial analysis, epidemiological research, and evidence-based medicine.

Hazard Ratio Calculator — Visualização de Proporção em Tempo Real
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Proportion Solver
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Visual ratio breakdown
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    Ratio Simplifier
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      Ratio Scaler
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        What is a Hazard Ratio?

        The hazard ratio (HR) compares the rate at which events (such as death, disease recurrence, or treatment failure) occur in two groups over time. An HR of 0.75 for a treatment group means the treatment reduces the hazard (instantaneous event rate) by 25% compared to the control group at any point during follow-up. Conversely, an HR of 1.50 indicates a 50% higher hazard in the treatment group.

        Hazard ratios are the primary effect measure in survival analysis and are derived from Cox proportional hazards regression models. Unlike simple risk ratios that compare cumulative event rates, hazard ratios account for the timing of events and varying follow-up durations across participants. An HR of 1.0 means no difference between groups; below 1.0 favors the treatment group; above 1.0 favors the control group.

        Fórmulas e Equações Utilizadas

        Esta Hazard Ratio Calculator usa 5 equações principais:

        1 Hazard Ratio ▼
        HR = Hazard Rate (Treatment) / Hazard Rate (Control)

        HR < 1 favors treatment. HR > 1 favors control. HR = 1 means no difference.

        2 Median Survival Ratio (approximation) ▼
        Survival Ratio ≈ 1 / HR

        If HR = 0.5, the treatment group lives approximately twice as long (median survival ratio = 2).

        3 Risk Reduction from HR ▼
        Risk Reduction = (1 - HR) × 100%

        HR = 0.65: Risk reduction = (1-0.65) × 100 = 35% reduction in the event rate.

        Explore all calculation options on the Calculadora de Proporção home page.

        Como Usar esta Calculadora

        Para usar esta Calculadora de Proporção, siga 3 passos:

        1

        Insira os Valores

        Digite os valores conhecidos nos campos de entrada. Deixe um campo vazio — esse é o valor desconhecido que a Calculadora de Proporção irá resolver.

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        Escolha o Modo

        Selecione o modo de proporção — Resolver, Simplificar ou Redimensionar. Cada modo aplica equações diferentes aos seus valores de entrada.

        3

        Obtenha os Resultados

        Clique em Calcular. A tela de resultados exibe a resposta com uma barra de proporção visual, um gráfico de pizza e um detalhamento da solução passo a passo.

        Problemas de Exemplo e Soluções Passo a Passo

        Aqui estão 3 problemas de exemplo com soluções passo a passo usando esta Calculadora de Proporção:

        Entrada 1 Cancer trial: HR = 0.72 for new drug
        1 Identify Hazard Ratio (HR = 0.72).
        2 Calculate Relative Risk Reduction: (1 - 0.72) × 100% = 28.0%.
        3 Interpret: Treatment group experiences events at 72% the rate of the control group at any given time point.
        ✓ 28% Reduction in Risk of Event (HR = 0.72)
        Entrada 2 Compare two treatments: HR = 1.15
        1 Identify Hazard Ratio (HR = 1.15).
        2 Calculate excess relative risk: (1.15 - 1) × 100% = 15.0%.
        3 Interpret: Treatment group has a 15% higher event rate relative to comparator.
        ✓ 15% Increased Event Hazard (HR = 1.15)
        Entrada 3 Estimate median survival improvement
        1 Given baseline median survival (T_0 = 12 months) and HR = 0.75:
        2 Estimated Treatment Median Survival = T_0 / HR = 12 / 0.75 = 16 months.
        3 Survival extension: 16 - 12 = 4 months.
        ✓ Median Survival Increases from 12 to 16 Months

        Perguntas Frequentes

        What does a hazard ratio of 0.75 mean? ▼

        An HR of 0.75 means the treatment group has a 25% lower instantaneous rate of the event (death, recurrence, etc.) compared to the control group at any given time during follow-up. It does not mean 25% fewer total events — the actual difference depends on follow-up duration and baseline event rates.

        What is the difference between hazard ratio and relative risk? ▼

        Relative risk (RR) compares cumulative event probabilities at a fixed time point. Hazard ratio compares instantaneous event rates across the entire study period, accounting for censoring (participants lost to follow-up). HR is preferred for time-to-event data; RR is simpler for fixed-time binary outcomes.

        When is a hazard ratio statistically significant? ▼

        A hazard ratio is statistically significant at the 0.05 level when its 95% confidence interval does not include 1.0. HR 0.72 (CI: 0.55-0.94) is significant because the CI is entirely below 1.0. HR 0.72 (CI: 0.48-1.08) is not significant because the CI crosses 1.0.

        What is Cox proportional hazards regression? ▼

        Cox regression is the standard statistical model for estimating hazard ratios while adjusting for covariates (age, sex, disease stage, etc.). It models the hazard function as a function of predictor variables, assuming the ratio of hazards between any two groups remains constant over time (proportional hazards assumption).

        Can a hazard ratio be greater than 1? ▼

        Yes. HR > 1 means the treatment group has a higher event rate. HR 1.50 indicates a 50% higher hazard in the treatment group — the intervention increases rather than decreases the risk. This can indicate a harmful treatment or simply that the reference group is the treatment group.

        What is the proportional hazards assumption? ▼

        The assumption that the hazard ratio remains constant over time. If a treatment works well initially but its benefit fades (or vice versa), the assumption is violated. Violations can be detected by Schoenfeld residual tests or by examining Kaplan-Meier curves that cross or diverge non-proportionally.

        How do I convert a hazard ratio to a percentage? ▼

        Subtract the HR from 1 and multiply by 100. HR 0.72 = (1 - 0.72) × 100 = 28% risk reduction. HR 1.30 = (1.30 - 1) × 100 = 30% risk increase. This gives the percentage change in the instantaneous event rate.

        What is the difference between hazard ratio and odds ratio? ▼

        Odds ratios (OR) compare the odds of an event between groups at a single time point and are used in case-control studies and logistic regression. Hazard ratios compare event rates over time and are used in survival analysis. For rare events (< 10%), OR approximates RR, but HR accounts for event timing and censoring.

        What is a Kaplan-Meier curve? ▼

        A Kaplan-Meier curve is a step-function graph showing the probability of surviving (or remaining event-free) over time for each group. The visual separation between curves reflects the hazard ratio. Curves that separate early suggest an immediate treatment effect; delayed separation suggests a latent benefit.

        How do I interpret hazard ratio in cancer research? ▼

        In oncology, HR typically compares overall survival (OS) or progression-free survival (PFS). HR 0.70 for OS means a 30% reduction in instantaneous death rate. HR 0.50 for PFS means a 50% reduction in progression/death rate. Both should be evaluated alongside median survival improvements and absolute risk reduction at landmark time points.

        What sample size do I need to detect a hazard ratio? ▼

        Sample size depends on the expected HR, desired statistical power (typically 80-90%), significance level (0.05), and expected event rate. Detecting HR 0.75 with 80% power requires approximately 380 total events. Smaller HRs (0.90) require far more events (1,600+). Use dedicated sample size software for precise calculations.

        Saiba Mais Sobre Razões

        O que é uma razão?

        Uma razão é uma comparação entre duas ou mais quantidades que indica o tamanho relativo de uma em relação à outra. Escrita como A : B, significa 'para cada A unidades da primeira quantidade, há B unidades da segunda'. Por exemplo, uma razão de 3 : 4 significa que para cada 3 partes de A, há 4 partes de B. As razões são usadas na culinária, construção, finanças, ciências e no dia a dia.

        Como resolvo uma proporção?

        Uma proporção é uma equação que indica que duas razões são iguais: A : B = C : D. Para encontrar um valor ausente, utiliza-se a multiplicação cruzada. Se D for desconhecido: D = (B × C) / A. Isso funciona porque, em razões iguais, os produtos cruzados são sempre iguais: A × D = B × C. Nossa Calculadora de Proporção faz isso automaticamente — basta digitar 3 valores para encontrar o quarto.

        Como simplifico uma razão?

        Para simplificar uma razão, encontre o Máximo Divisor Comum (MDC) de ambos os números e divida cada um deles por este divisor. Por exemplo, em 24 : 36, o MDC é 12. Assim, 24 ÷ 12 = 2 e 36 ÷ 12 = 3, resultando na razão simplificada de 2 : 3. Nosso simplificador calcula o MDC e reduz a razão automaticamente.

        O que é redimensionamento de razão e quando é útil?

        Redimensionar uma razão significa multiplicar ambas as partes pelo mesmo fator para gerar uma razão equivalente maior (ou menor). Por exemplo, redimensionar 2 : 5 por um fator de 3 resulta em 6 : 15. Isso é ideal para ajustar receitas (triplicar os ingredientes), na construção civil (escala de projetos), misturar soluções químicas ou em qualquer cenário onde é preciso manter a mesma proporção em outra escala.

        Qual é a diferença entre razão e fração?

        Uma razão A : B compara duas quantidades entre si (relação parte-parte), enquanto uma fração A/B costuma representar uma relação parte-todo. No entanto, toda razão pode ser representada como fração: 3 : 4 é o mesmo que 3/4 = 0.75. A diferença principal está no contexto de comparação das grandezas.