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Lecture 12 Figures from Gonzalez and Woods, Digital Image Processing, Second Edition, 2002.

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Presentation on theme: "Lecture 12 Figures from Gonzalez and Woods, Digital Image Processing, Second Edition, 2002."— Presentation transcript:

1 Lecture 12 Figures from Gonzalez and Woods, Digital Image Processing, Second Edition, 2002.

2 Image Restoration

3 Chapter 5 Image Restoration

4 Spatial and Frequency Properties of Noise
Assumptions about noise Noise is independent of spatial coordinates (except spatially periodic noise) Uncorrelated with respect to image itself (actual pixel values) These assumptions are not strictly true( X-ray and nuclear medicine imaging, for instance. Under such assumptions, we have noise density functions

5 Chapter 5 Image Restoration

6 Types of noise typical for these distributions
Gaussian noise– Electronic circuits and sensor noise Rayleigh noise– noise fom range imaging Exponential and Gamma Densities – Laser imaging Impulse noise – From situations where quick transients, such as faulty switching, take place during imaging Uniform noise– Used for random number generators, not really descriptive of applications

7 Chapter 5 Image Restoration

8 Chapter 5 Image Restoration

9 Chapter 5 Image Restoration

10 Chapter 5 Image Restoration

11 Estimating Noise Parameters

12 Chapter 5 Image Restoration

13 Spatial Domain Noise Filters(1)

14 Chapter 5 Image Restoration

15 Spatial Domain Noise Filters(2)

16 Chapter 5 Image Restoration

17 Chapter 5 Image Restoration

18 Spatial Domain Noise Filters(3)

19 Spatial Domain Filters (4)

20 Chapter 5 Image Restoration

21 Chapter 5 Image Restoration

22 Spatial Domain Noise Filters (5)

23 Chapter 5 Image Restoration

24 Chapter 5 Image Restoration

25 Adaptive Spatial Filters
Local noise reduction filter Adaptive Mean filter

26 Chapter 5 Image Restoration


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