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  "Title": "Super Imposition by Translation and Rotation Growth Curve\nAnalysis",
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  "Maintainer": "Tim Cole <tim.cole@ucl.ac.uk>",
  "Description": "Functions for fitting and plotting SITAR (Super Imposition\nby Translation And Rotation) growth curve models. SITAR is a\nshape-invariant model with a regression B-spline mean curve and\nsubject-specific random effects on both the measurement and age\nscales.  The model was first described by Lindstrom (1995)\n<doi:10.1002/sim.4780141807> and developed as the SITAR method\nby Cole et al (2010) <doi:10.1093/ije/dyq115>.",
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  "Repository": "https://statist7.r-universe.dev",
  "Date/Publication": "2025-07-26 22:38:44 UTC",
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  "_help": [
    {
      "page": "sitar-package",
      "title": "SITAR (SuperImposition by Translation And Rotation) growth curve analysis",
      "topics": [
        "sitar-package"
      ]
    },
    {
      "page": "anova.sitar",
      "title": "Compare Likelihoods of Fitted SITAR Objects",
      "topics": [
        "anova.sitar"
      ]
    },
    {
      "page": "apv_se",
      "title": "Bootstrap standard errors for SITAR peak velocity and age at peak velocity",
      "topics": [
        "apv_se"
      ]
    },
    {
      "page": "berkeley",
      "title": "The Berkeley Child Guidance Study",
      "topics": [
        "berkeley"
      ]
    },
    {
      "page": "BICadj",
      "title": "Ways to compare SITAR models for fit",
      "topics": [
        "AICadj",
        "BICadj",
        "getL",
        "varexp"
      ]
    },
    {
      "page": "bupdate",
      "title": "Update the b fixed effect to minimise the b-c random effect correlation",
      "topics": [
        "bupdate"
      ]
    },
    {
      "page": "cdc2000",
      "title": "The CDC 2000 growth reference",
      "topics": [
        "cdc2000"
      ]
    },
    {
      "page": "cLMS",
      "title": "LMS conversion to and from z-scores",
      "topics": [
        "cLMS",
        "zLMS"
      ]
    },
    {
      "page": "codeplot",
      "title": "Plot and zap velocity outliers in growth curves",
      "topics": [
        "codeplot",
        "zapvelout"
      ]
    },
    {
      "page": "deren",
      "title": "Deren prevalence data on child thinness, overweight and obesity",
      "topics": [
        "deren"
      ]
    },
    {
      "page": "dfpower",
      "title": "Tabulate BIC of SITAR models by degrees of freedom, fixed effects and xy power transformations",
      "topics": [
        "dfpower"
      ]
    },
    {
      "page": "dfset",
      "title": "Find degrees of freedom for a natural spline curve to minimise BIC or AIC",
      "topics": [
        "dfset"
      ]
    },
    {
      "page": "funcall",
      "title": "Function call with optional inverse",
      "topics": [
        "funcall"
      ]
    },
    {
      "page": "getData.sitar",
      "title": "Extract elements of fitted SITAR models",
      "topics": [
        "getCovariate.sitar",
        "getData.sitar",
        "getVarCov.sitar"
      ]
    },
    {
      "page": "getDV",
      "title": "Extract individual estimates of peak velocity and age at peak velocity",
      "topics": [
        "getDV"
      ]
    },
    {
      "page": "getPeakTrough",
      "title": "Identify peak or trough on curve",
      "topics": [
        "getPeak",
        "getPeakTrough",
        "getTakeoff",
        "getTrough"
      ]
    },
    {
      "page": "heights",
      "title": "Serial heights measured in 12 girls",
      "topics": [
        "heights"
      ]
    },
    {
      "page": "ifun",
      "title": "Invert an expression defining a data transformation",
      "topics": [
        "ifun"
      ]
    },
    {
      "page": "iotf",
      "title": "IOTF international body mass index reference",
      "topics": [
        "iotf"
      ]
    },
    {
      "page": "lms2z",
      "title": "Convert to/from measurement from/to z-score with growth reference",
      "topics": [
        "LMS2z"
      ]
    },
    {
      "page": "LMSfit",
      "title": "Estimate LMS curves from tabulated growth reference centiles",
      "topics": [
        "LMSfit"
      ]
    },
    {
      "page": "mplot",
      "title": "Plot multiple growth curves",
      "topics": [
        "mplot"
      ]
    },
    {
      "page": "ob_convertr",
      "title": "Convert between IOTF, WHO and CDC prevalence rates for child thinness, overweight and obesity",
      "topics": [
        "ob_convertr",
        "ob_convertr2"
      ]
    },
    {
      "page": "optimal_design",
      "title": "Optimal design for growth reference centile studies",
      "topics": [
        "n_agegp",
        "optimal_design"
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    },
    {
      "page": "pdLMS",
      "title": "Plot frequency distributions(s) for given L, M and S values in LMS method",
      "topics": [
        "pdLMS"
      ]
    },
    {
      "page": "plot.sitar",
      "title": "Plot SITAR model",
      "topics": [
        "lines.sitar",
        "plot.sitar",
        "plot_a",
        "plot_c",
        "plot_D",
        "plot_d",
        "plot_u",
        "plot_V",
        "plot_v"
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    },
    {
      "page": "plotclean",
      "title": "Plot multiple growth curves to identify outliers",
      "topics": [
        "plotclean"
      ]
    },
    {
      "page": "predict.sitar",
      "title": "Predict SITAR model",
      "topics": [
        "predict.sitar"
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    },
    {
      "page": "print.sitar",
      "title": "Print SITAR model",
      "topics": [
        "print.sitar"
      ]
    },
    {
      "page": "print.summary.sitar",
      "title": "Print summary of SITAR model",
      "topics": [
        "print.summary.sitar"
      ]
    },
    {
      "page": "recalib",
      "title": "Recalibrate x, y data using SITAR random effects",
      "topics": [
        "recalib"
      ]
    },
    {
      "page": "sitar",
      "title": "Fit SITAR growth curve model",
      "topics": [
        "sitar",
        "update.sitar"
      ]
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