All functions

CI.BE()

1–2*alpha confidence interval given point estimate, CV, and n

CI.RatioF()

1–2*alpha Fieller CI given point estimate, CV (, CVb) and n

CV2se() se2CV() CV2mse() mse2CV()

Helper functions

CVCL()

Confidence limits of a CV for log-normal data

CVfromCI() CI2CV()

CV from a given Confidence interval

CVp2CV()

Decompose CV(T) and CV(R) from 'pooled' CV of T/R

CVpooled() print(<CVp>)

Pooled CV from several studies

CVwRfromU() U2CVwR()

CVwR from the upper expanded limit (ABEL)

OwensQ()

Owen's Q-function

OwensQOwen()

Owen's Q-function via repeated integration by parts

OwensT()

Owen's T-function

bib.CL()

Design matrices of period balanced incomplete block designs

data2x2 ct5.1 ct5.2 ct5.3 ct5.4.1

Sample Size Tables for the Classical 2x2 Crossover Design

data2x2x3 ct9.6.2 ct9.6.6

Sample Size Tables for the 2x2x3 Replicate Crossover Design

data2x4x4 ct9.6.4 ct9.6.8

Sample Size Tables for the 2x4x4 Replicate Crossover Design

data_parallel ctSJ.VIII.10 ctSJ.VIII.20 ctCW.III

Sample Size Tables for the Parallel Group Design

defunct

Removed functions in PowerTOST

deprecated

Deprecated functions in PowerTOST

exppower.TOST()

Expected power of the TOST procedure

exppower.noninf()

Expected power of the non-inferiority test

expsampleN.TOST()

Sample size based on expected power

expsampleN.noninf()

Sample size based on expected power for the non-inferiority test

known.designs()

Show the 'known' designs

pa.ABE() print(<pwrA>) plot(<pwrA>)

Power analysis for average bioequivalence (ABE)

pa.NTID()

Power analysis for scaled ABE for NTIDs

pa.scABE()

Power analysis for scaled average bioequivalence (scABE)

power.2TOST()

Power for two simultaneous TOST procedures

power.HVNTID()

(Empirical) Power for BE decision via FDA method for highly variable NTIDs

power.NTID()

(Empirical) Power for BE decision via FDA method for NTIDs

power.RSABE()

(Empirical) Power for BE decision via linearized scaled ABE criterion

power.RSABE2L.sdsims()

(Empirical) Power of BE Decision via Reference Scaled ABE

power.RatioF()

Power for equivalence of the ratio of two means with normality on original scale

power.TOST()

Power of the classical TOST procedure

power.TOST.sds()

Power calculation of the BE decision with models incorporating groups

power.TOST.sim()

Power of the TOST procedure obtained via simulations

power.dp()

Power of dose-proportionality studies evaluated via Power model

power.noninf()

Power of the one-sided non-inferiority t-test

power.scABEL()

(Empirical) Power of BE decision via scaled (widened) BE acceptance limits

power.scABEL.sdsims()

(Empirical) Power of BE decision via scaled (widened) BE acceptance limits

pvalue.TOST() pvalues.TOST()

p-value(s) of the TOST procedure

reg_const()

Constructor of an object with class 'regSet' containing the regulatory settings for ABEL

sampleN.2TOST()

Sample size based on power of two TOSTs

sampleN.HVNTID()

Sample size estimation for BE decision via FDA method for highly variable (HV) narrow therapeutic index drugs (NTIDs)

sampleN.NTID()

Sample size estimation for BE decision via the FDA's method for narrow therapeutic index drugs (NTIDs)

sampleN.RSABE()

Sample size estimation for BE decision via linearized scaled ABE criterion

sampleN.RSABE2L.sdsims()

Sample size estimation for BE Decision via Reference Scaled ABE

sampleN.RatioF()

Sample size for equivalence of the ratio of two means with normality on original scale

sampleN.TOST()

Sample size based on power of TOST

sampleN.dp()

Sample size estimation of dose-proportionality studies evaluated via the power model

sampleN.noninf()

Sample size for the non-inferiority t-test

sampleN.scABEL()

Sample size estimation for BE decision via scaled (expanded) BE acceptance limits

sampleN.scABEL.ad()

Sample size estimation for ABEL and iteratively adjusted alpha

sampleN.scABEL.sdsims()

Sample size estimation for BE decision via scaled (expanded) BE acceptance limits

scABEL()

Scaled (widened) BE Acceptance Limits

scABEL.ad()

Iteratively adjusted alpha for ABEL

type1error.2TOST

Type I error rate for two simultaneous TOST procedures