Analyze and Design Repeated Low-Dose Challenge Experiments


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Documentation for package ‘rld’ version 1.0

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rld-package Designing and Analyzing Repeated Low-Dose Challenge Experiments
calcpk Calculate Per-Challenge Probability of Infection
calcVEk Calculate Per-Challenge Vaccine Efficacy
calcVEt Calculate Vaccine Efficacy Before or At the Time of Challenge t
lrtest Likelihood Ratio Test
print.calcpk Calculate Per-Challenge Probability of Infection
print.calcVEk Calculate Per-Challenge Vaccine Efficacy
print.calcVEt Calculate Vaccine Efficacy Before or At the Time of Challenge t
print.lrtest Likelihood Ratio Test
print.rld Fit a Discrete-Time Survival Model
print.rld.design Power analysis for the Repeated-Low Dose Experiments
print.summary.calcpk Calculate Per-Challenge Probability of Infection
print.summary.calcVEk Calculate Per-Challenge Vaccine Efficacy
print.summary.calcVEt Calculate Vaccine Efficacy Before or At the Time of Challenge t
print.summary.rld Fit a Discrete-Time Survival Model
rld Fit a Discrete-Time Survival Model
rld.design Power analysis for the Repeated-Low Dose Experiments
rld.fit Discrete-Time Survival Model Fitting Function
SampleData Simulated Sample Data for Illustration
spBayesSurv Designing and Analyzing Repeated Low-Dose Challenge Experiments
summary.calcpk Calculate Per-Challenge Probability of Infection
summary.calcVEk Calculate Per-Challenge Vaccine Efficacy
summary.calcVEt Calculate Vaccine Efficacy Before or At the Time of Challenge t
summary.rld Fit a Discrete-Time Survival Model
transdata Transfer Input Data Frame to Model Fitting Data Frame