library("doMC")
registerDoMC(detectCores(all.tests = FALSE, logical = TRUE)-1)
# Load functions
source("Functions/multi_impute.R")
source("Functions/rubin2_all.R")
source("Functions/mi4limma.R")
source("Functions/limmaCompleteTest_mod.R")
# Load simulated datasets
load("Simulation-1/DATA/norm_200_m100_sd1_vs_m200_sd1_list.RData")
# Load metadata
load("Simulation-1/DATA/norm_200_m100_sd1_vs_m200_sd1_metadata")
# ---- RANDOM NUMBER GENERATION ---- #
set.seed(17)
# ---- AMPUTATION ---- #
MV1pct.NA.data <- foreach(iforeach = norm.200.m100.sd1.vs.m200.sd1.list,
.errorhandling = 'stop', .verbose = T) %dopar%
MVgen(dataset = iforeach[,-1], prop_NA = 0.01)
# ---- IMPUTATION ---- #
MV1pct.impMLE <- foreach(iforeach = MV1pct.NA.data,
.errorhandling = 'stop', .verbose = F) %dopar%
multi.impute(data = iforeach, conditions = metadata$Condition,
method = "MLE", parallel = F)
# ---- ESTIMATION ---- #
MV1pct.impMLE.VarRubin.Mat <- lapply(1:length(MV1pct.impMLE), function(index){
print(paste(Sys.time(), "Dataset", index, "out of", length(MV1pct.impMLE)))
rubin2.all(data = MV1pct.impMLE[[index]], metacond = metadata$Condition)
})
# ---- PROJECTION ---- #
MV1pct.impMLE.VarRubin.S2 <- lapply(1:length(MV1pct.impMLE.VarRubin.Mat), function(id.dataset){
print(paste("Dataset", id.dataset, "out of",length(MV1pct.impMLE.VarRubin.Mat), Sys.time()))
as.numeric(lapply(MV1pct.impMLE.VarRubin.Mat[[id.dataset]], function(aaa){
DesMat = DAPAR::make.design(metadata)
return(max(diag(aaa)%*%t(DesMat)%*%DesMat))
}))
})
# ---- MODERATED T-TEST ---- #
MV1pct.impMLE.mi4limma.res <- foreach(iforeach = 1:100, .errorhandling = 'stop', .verbose = T) %dopar%
mi4limma(qData = apply(MV1pct.impMLE[[iforeach]],1:2,mean),
sTab = metadata,
VarRubin = sqrt(MV1pct.impMLE.VarRubin.S2[[iforeach]]))
MV1pct.impMLE.dapar.res <- foreach(iforeach = 1:100, .errorhandling = 'stop', .verbose = T) %dopar%
limmaCompleteTest.mod(qData = apply(MV1pct.impMLE[[iforeach]],1:2,mean),
sTab = metadata)
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