文件名称:b

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  • Windows编程
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  • 2012-11-26
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  • san***
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cntrd: calculates the centroid of bright spots to sub-pixel accuracy.

Inspired by Grier & Crocker s feature for IDL, but greatly simplified and optimized

for matlab

INPUTS:

im: image to process, particle should be bright spots on dark background with little noise

ofen an bandpass filtered brightfield image or a nice fluorescent image



mx: locations of local maxima to pixel-level accuracy from pkfnd.m



sz: diamter of the window over which to average to calculate the centroid.

should be big enough

to capture the whole particle but not so big that it captures others.

if initial guess of center (from pkfnd) is far from the centroid, the

window will need to be larger than the particle size. RECCOMMENDED

size is the long lengthscale used in bpass plus 2.





interactive: OPTIONAL INPUT set this variable to one and it will show you the image used to calculate

each centroid, the pixel-level peak and the centroid-

cntrd: calculates the centroid of bright spots to sub-pixel accuracy.

  Inspired by Grier & Crocker s feature for IDL, but greatly simplified and optimized

  for matlab

 INPUTS:

 im: image to process, particle should be bright spots on dark background with little noise

  ofen an bandpass filtered brightfield image or a nice fluorescent image



 mx: locations of local maxima to pixel-level accuracy from pkfnd.m



 sz: diamter of the window over which to average to calculate the centroid.

   should be big enough

   to capture the whole particle but not so big that it captures others.

   if initial guess of center (from pkfnd) is far from the centroid, the

   window will need to be larger than the particle size. RECCOMMENDED

   size is the long lengthscale used in bpass plus 2.





 interactive: OPTIONAL INPUT set this variable to one and it will show you the image used to calculate

   each centroid, the pixel-level peak and the centroid
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b.txt

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