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ttest(1)					       The Computational Morphometry Toolkit						  ttest(1)

NAME
ttest - T-tests SYNOPSIS
ttest [options] imageX0 [imageX1 ...] -- imageY0 [imageY1] ... ttest [options] --symmetric imageX0 [imageX1 ...] DESCRIPTION
Pixelwise tests of statistical significance. Also compute correlations and z-scores OPTIONS
Global Toolkit Options (these are shared by all CMTK tools) --help Write list of basic command line options to standard output. --help-all Write complete list of basic and advanced command line options to standard output. --wiki Write list of command line options to standard output in MediaWiki markup. --man Write man page source in 'nroff' markup to standard output. --version Write toolkit version to standard output. --echo Write the current command line to standard output. --verbose-level <integer> Set verbosity level. --verbose, -v Increment verbosity level by 1 (deprecated; supported for backward compatibility). --threads <integer> Set maximum number of parallel threads (for POSIX threads and OpenMP). Main Options --log, -l Use log data for testing --abs, -a Use absolute data for testing --abs-out, -A Generate absolute (unsigned) data --invert, -i Invert data, i.e., subtract from 1.0 --short, -s Convert probabilities to short (and scale by 1000) --paired, -p Compute paired t-test [default: groupwise] --cross-correlation, -c Compute paired cross-correlation --zscores, -Z Compute z-scores of test (y) distribution averages --text, -t Text file input and output rather than image files. --mask <string>, -m <string> Mask file name [Default: NONE] --outfile <string>, -o <string> Output file name [Default: ttest.nii ] --tstats-file <string> T-statistics output file name (for correlation: p-value output file) [Default: NONE] AUTHORS
Torsten Rohlfing, with contributions from Michael P. Hasak, Greg Jefferis, Calvin R. Maurer, and Daniel B. Russakoff LICENSE
http://www.fsf.org/licensing/licenses/gpl.html BUGS
Report bugs at http://nitrc.org/projects/cmtk/ ACKNOWLEDGMENTS
From April 2009 through September 2011, CMTK Development and Maintenance was supported by the National Institute of Biomedical Imaging and Bioengineering under Grant No.R01 EB008381 (PI: Torsten Rohlfing). CMTK 2.2.2 Jul 20 2012 ttest(1)

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concat_affine(1)				       The Computational Morphometry Toolkit					  concat_affine(1)

NAME
concat_affine - Concatenate affine transformations SYNOPSIS
concat_affine [options] x0 [x1 ...] WHERE x0 ... xN is [{-i,--inverse}] affine transformation # DESCRIPTION
This tool computes the explicit concatenation of multiple affine coordinate transformations, each of which can be optionally inverted. OPTIONS
Global Toolkit Options (these are shared by all CMTK tools) --help Write list of basic command line options to standard output. --help-all Write complete list of basic and advanced command line options to standard output. --wiki Write list of command line options to standard output in MediaWiki markup. --man Write man page source in 'nroff' markup to standard output. --version Write toolkit version to standard output. --echo Write the current command line to standard output. --verbose-level <integer> Set verbosity level. --verbose, -v Increment verbosity level by 1 (deprecated; supported for backward compatibility). --threads <integer> Set maximum number of parallel threads (for POSIX threads and OpenMP). Main Options --outfile <string>, -o <string> Output transformation. [Default: concat.xform ] --append, -a Append to output file [default: overwrite]. --invert-output, -I Invert concatenated transformation before output [default: no]. AUTHORS
Torsten Rohlfing, with contributions from Michael P. Hasak, Greg Jefferis, Calvin R. Maurer, and Daniel B. Russakoff LICENSE
http://www.fsf.org/licensing/licenses/gpl.html BUGS
Report bugs at http://nitrc.org/projects/cmtk/ ACKNOWLEDGMENTS
From April 2009 through September 2011, CMTK Development and Maintenance was supported by the National Institute of Biomedical Imaging and Bioengineering under Grant No.R01 EB008381 (PI: Torsten Rohlfing). CMTK 2.2.2 Jul 20 2012 concat_affine(1)
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