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Published byRebecca Fields Modified over 9 years ago
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General morphometric protocol Four simple steps to morphometric success
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Four steps Data acquisition – images and landmarks Remove shape variation and generate shape variables – superimposition and TPS Perform statistical analyses to test biological hypotheses – standard multivariate analysis and resampling methods Produce graphical depiction of results – deformation grids, statistical plots, etc.
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Data acquisition - images Transferring 3D to 2D depiction Many ways to go wrong Three things that don’t matter –Location in plane –Scale –Rotation
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Problems to avoid Paralax – pitch and roll “bendiness” – look for straight lines and include points on these lines Articulated structures – can incorporate in analysis or remove as noise, but easiest to avoid problem in beginning
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Avoiding image problems Standardize image acquisition procedure Independent quality check
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Digitizing landmarks Homology Type 1, 2, and 3 - sliding semilandmarks Order is critical Checking for errors and outliers Symmetrical structures
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Step two – remove nonshape variation and generate shape variables 3 types of nonshape variation – relative position, scale, rotation Remove by a process called superimposition via generalized Procrustes analysis or GPA
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Variation in images
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Translation
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Rotation
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Scaling Only shape variation left
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Generate shape variables Thin plate spline Generates non-affine and affine components referred to as partial warps and uniform components
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Affine and non-affine shape change
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Shape coordinates Partial warps come in X and Y pairs, (2p-4) Uniform components also a pair, X and Y Combined referred to as the W (weight) matrix Scores are coordinates of a point along partial warp axes Nonsingular data matrix for multivariate analysis of shape
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Relative warps Can use PCA on W matrix to generate relative warp scores and use these as data matrix Useful for visualization of major axis of shape variation
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