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% File src/library/stats/man/SSfpl.Rd% Part of the R package, http://www.R-project.org% Copyright 1995-2007 R Core Development Team% Distributed under GPL 2 or later\name{SSfpl}\title{Four-parameter Logistic Model}\usage{SSfpl(input, A, B, xmid, scal)}\alias{SSfpl}\arguments{\item{input}{a numeric vector of values at which to evaluate the model.}\item{A}{a numeric parameter representing the horizontal asymptote onthe left side (very small values of \code{input}).}\item{B}{a numeric parameter representing the horizontal asymptote onthe right side (very large values of \code{input}).}\item{xmid}{a numeric parameter representing the \code{input} value at theinflection point of the curve. The value of \code{SSfpl} will bemidway between \code{A} and \code{B} at \code{xmid}.}\item{scal}{a numeric scale parameter on the \code{input} axis.}}\description{This \code{selfStart} model evaluates the four-parameter logisticfunction and its gradient. It has an \code{initial} attribute thatwill evaluate initial estimates of the parameters \code{A}, \code{B},\code{xmid}, and \code{scal} for a given set of data.}\value{a numeric vector of the same length as \code{input}. It is the value ofthe expression \code{A+(B-A)/(1+exp((xmid-input)/scal))}. If all ofthe arguments \code{A}, \code{B}, \code{xmid}, and \code{scal} arenames of objects, the gradient matrix with respect to these names isattached as an attribute named \code{gradient}.}\author{Jose Pinheiro and Douglas Bates}\seealso{\code{\link{nls}}, \code{\link{selfStart}}}\examples{Chick.1 <- ChickWeight[ChickWeight$Chick == 1, ]SSfpl( Chick.1$Time, 13, 368, 14, 6 ) # response onlyA <- 13; B <- 368; xmid <- 14; scal <- 6SSfpl( Chick.1$Time, A, B, xmid, scal ) # response and gradientgetInitial(weight ~ SSfpl(Time, A, B, xmid, scal), data = Chick.1)## Initial values are in fact the converged valuesfm1 <- nls(weight ~ SSfpl(Time, A, B, xmid, scal), data = Chick.1)summary(fm1)\dontshow{require(graphics)xx <- seq(-0.5, 5, len = 101)yy <- 1 + 4 / ( 1 + exp((2-xx)))par(mar = c(0, 0, 3.5, 0))plot(xx, yy, type = "l", axes = FALSE, ylim = c(0,6), xlim = c(-1, 5),xlab = "", ylab = "", lwd = 2,main = "Parameters in the SSfpl model")usr <- par("usr")arrows(usr[1], 0, usr[2], 0, length = 0.1, angle = 25)arrows(0, usr[3], 0, usr[4], length = 0.1, angle = 25)text(usr[2] - 0.2, 0.1, "x", adj = c(1, 0))text(-0.1, usr[4], "y", adj = c(1, 1))abline(h = 5, lty = 2, lwd = 0)arrows(-0.8, 2.1, -0.8, 0, length = 0.1, angle = 25)arrows(-0.8, 2.9, -0.8, 5, length = 0.1, angle = 25)text(-0.8, 2.5, expression(phi[1]), adj = c(0.5, 0.5))abline(h = 1, lty = 2, lwd = 0)arrows(-0.3, 0.25, -0.3, 0, length = 0.07, angle = 25)arrows(-0.3, 0.75, -0.3, 1, length = 0.07, angle = 25)text(-0.3, 0.5, expression(phi[2]), adj = c(0.5, 0.5))segments(2, 0, 2, 3.3, lty = 2, lwd = 0.75)text(2, 3.3, expression(phi[3]), adj = c(0.5, 0))segments(3, 1+4/(1+exp(-1)) - 0.025, 3, 2.5, lty = 2, lwd = 0.75)arrows(2.3, 2.7, 2.0, 2.7, length = 0.08, angle = 25)arrows(2.7, 2.7, 3.0, 2.7, length = 0.08, angle = 25)text(2.5, 2.7, expression(phi[4]), adj = c(0.5, 0.5))}}\keyword{models}