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<center>[[Image:fig2_color_mh.png|750px|thumb|left|Fig 2: Scatter plots and Contours. All contours are at Mahalanobis distance 1. (a) Original white density of '''W''', (b) scaled density of '''Y''', (c) colored density of '''X'''.]]</center>
 
<center>[[Image:C21_5.png|Fig 3: Summary diagram of whitening and coloring process.]]</center>
 
<center>[[Image:C21_5.png|Fig 3: Summary diagram of whitening and coloring process.]]</center>
  
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== '''References''' ==
 
== '''References''' ==
  
[1]. Charles A. Bouman, [https://engineering.purdue.edu/~bouman/grad-labs/Eigen-Image-Analysis/pdf/lab.pdf ''Digital Image Processing Laboratory: Eigen-decomposition of Images'']. February 22, 2013
 
  
 
[2]. [https://engineering.purdue.edu/~mboutin/ Mireille Boutin], "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.
 
[2]. [https://engineering.purdue.edu/~mboutin/ Mireille Boutin], "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.
  
[3]. Gilbert Strang,  ''Linear Algebra and its Applications''. Thomson Brooks/Cole. 4th Edition, 2006.
 
  
 
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Revision as of 16:19, 5 April 2014

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Fig 2: Scatter plots and Contours. All contours are at Mahalanobis distance 1. (a) Original white density of W, (b) scaled density of Y, (c) colored density of X.
Fig 3: Summary diagram of whitening and coloring process.

References

[2]. Mireille Boutin, "ECE662: Statistical Pattern Recognition and Decision Making Processes," Purdue University, Spring 2014.



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Sees the importance of signal filtering in medical imaging

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