How to find the X axis length and Yaxis length of the object
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saravanakumar D
il 27 Dic 2013
Commentato: Image Analyst
il 30 Dic 2013
I have to find the shape of the object so i have to find the length of the x and y axis length of the shape. So please help me
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Sean de Wolski
il 27 Dic 2013
doc regionprops
4 Commenti
Sean de Wolski
il 27 Dic 2013
Then use 'Orientation' property to convert between the direction of the ellipse and x/y.
Più risposte (1)
Image Analyst
il 27 Dic 2013
You could use bounding box, or MajorAxisLength and MinorAxisLength, which is the axes of an ellipse fitted to the blob. There is no farthest end-to-end measurement available. And there is no definitive crossways width. If you had an elongated, irregularly-shaped blob and the major axis was where you think it would be, then what is the minor axis? The narrowest one? The cross distance at the midpoint (which may be at the widest point, the narrowest point, or something else)?
11 Commenti
Sean de Wolski
il 30 Dic 2013
Either way, you could just replace the nan's with zeros.
D(isnan(D)) = 0;
Image Analyst
il 30 Dic 2013
Sorry Sean, I found the problem. I had a file called rice.png that was a binary mask file in a folder (that I had created for a project I was working on) and that was earlier on the path. It used that instead. That's the danger of not specifying the full path. It's not your fault - how could you know that I'd just happen to have a different image called that? - but I'm showing the more robust code below:
% Define folder where rice.png lives.
folder = fullfile(matlabroot, '\toolbox\images\imdemos');
baseFileName = 'rice.png';
% Get the full filename, with path prepended.
fullFileName = fullfile(folder, baseFileName);
I = imread(fullFileName);
imshow(I);
rice = imclearborder(stdfilt(I)<15);
skel = bwmorph(rice,'skel',inf);
endpoints = bwmorph(skel,'endpoints');
L = bwlabel(rice);
L(~endpoints) = 0;
for ii = 2:max(L(:))
idx = find(L == ii);
endpoints(idx(2:end)) = 0; %keep only one end point per object
end
D = bwdistgeodesic(rice,endpoints,'quasi-euclidean');
imshow(D,[]);
colormap(jet);
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