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95 lines
4.8 KiB
Matlab
95 lines
4.8 KiB
Matlab
% simple and fast phase ramp/offset removal from already unwrapped sinogram
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% Assume the sample to contain air on both horizontal sides in stripes:
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% 1:air_gap(1) and end-air_gap(2):end
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%
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% sinogram = remove_sinogram_ramp(sinogram,air_gap,polyfit_order )
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%
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% using linear interpolation between air on both sides
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% Inputs:
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% **sinogram - unwrapped projections
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% **air_gap = [2x1] vector with number of pixels on both sides where can
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% be assumed to be air
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% **polyfit_order:-1 = dont assume anything about the removed phase,
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% subtract linear offset from each horizontal line separately
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% 0 = assume that removed degree of freedom is only a constant offset
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% 1 = assume that removed degree of freedom is a 2D plane
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% Outputs:
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% ++unwrapped phase after the ramp removal
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%*-----------------------------------------------------------------------*
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%| |
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%| Except where otherwise noted, this work is licensed under a |
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%| Creative Commons Attribution-NonCommercial-ShareAlike 4.0 |
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%| International (CC BY-NC-SA 4.0) license. |
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%| |
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%| Copyright (c) 2017 by Paul Scherrer Institute (http://www.psi.ch) |
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%| |
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%| Author: CXS group, PSI |
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%*-----------------------------------------------------------------------*
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% You may use this code with the following provisions:
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%
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% If the code is fully or partially redistributed, or rewritten in another
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% computing language this notice should be included in the redistribution.
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%
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% If this code, or subfunctions or parts of it, is used for research in a
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% publication or if it is fully or partially rewritten for another
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% computing language the authors and institution should be acknowledged
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% in written form in the publication: “Data processing was carried out
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% using the “cSAXS matlab package” developed by the CXS group,
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% Paul Scherrer Institut, Switzerland.”
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% Variations on the latter text can be incorporated upon discussion with
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% the CXS group if needed to more specifically reflect the use of the package
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% for the published work.
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%
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% A publication that focuses on describing features, or parameters, that
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% are already existing in the code should be first discussed with the
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% authors.
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%
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% This code and subroutines are part of a continuous development, they
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% are provided “as they are” without guarantees or liability on part
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% of PSI or the authors. It is the user responsibility to ensure its
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% proper use and the correctness of the results.
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function sinogram = remove_sinogram_ramp(sinogram,air_gap, polyfit_order)
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if nargin < 3
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polyfit_order = -1;
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end
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air_gap = ceil(air_gap);
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[Nlayers,width_sinogram,~] = size(sinogram);
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ax = 1:width_sinogram;
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mask{1} = ax <= air_gap(1);
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mask{2} = ax >= width_sinogram-air_gap(min(end,2));
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%%%%%%%% get average sinogram to be subtracted
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for ii = 1:2
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% get average values in the air_gap
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air_values{ii} = sum( bsxfun(@times,sinogram,mask{ii}),2)/sum(mask{ii});
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if polyfit_order == 0
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%% find phase offset value
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air_values{ii} = mean(air_values{ii});
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elseif polyfit_order == 1
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%% find 2D plane that fits the air region
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ramp = linspace(-1,1,Nlayers)';
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weight = 1;
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% iterativelly refine the ideal plane estiamte to ignore
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% imperfect estimations of the air_gap paramter
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for jj = 1:10
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% fit it with a linear plane, use for 2d unwrapping
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plane_fit = mean(weight .*air_values{ii}) ./ mean(weight) +mean(weight.*air_values{ii} .* ramp)./ mean(weight.*ramp.^2) .*ramp;
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deviation = 5*mad(air_values{ii}(:) - plane_fit(:),0);
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% avoid outliers by adaptive weighting
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weight = 1./(1+(abs(air_values{ii}-plane_fit)./deviation).^2 );
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end
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air_values{ii} = plane_fit;
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end
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end
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% get a plane in between left and right side passing through
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% air_values{1} and air_values{2}
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ramp = permute(interp1([0,width_sinogram]', permute([air_values{:}],[2,1,3]), 1:width_sinogram), [2,1,3]);
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%%%%%%%% remove ramp & sinogram offset
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sinogram = sinogram - ramp;
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end |