• DocumentCode
    1955246
  • Title

    Atomic force microscope image enhancement using human visual system model properties and adaptive filters

  • Author

    Hadhoud, Mohiy M. ; Atta, Raghied M.

  • Author_Institution
    Telecommun. Dept., Menoufia Univ., Egypt
  • fYear
    2000
  • fDate
    2000
  • Abstract
    Atomic force microscope (AFM) images are usually of poor quality and need to be interpreted visually. The human visual system (HVS) is generally modeled as an adaptive, multichannel and highly non-linear system. This paper proposes an adaptive image enhancement systems for improving the quality of the AFM images. The proposed method is based on a combination of an adaptive low pass filter and a single channel adaptive high pass filter using homomorphic processing. The proposed system is nonlinear through the use of the homomorphic transformation and the adaptation of contrast enhancement parameters to the change in the input local characteristics and contrast. Comparison with other fixed and adaptive contrast enhancement filters is made to show the improvement obtained using the proposed method
  • Keywords
    adaptive filters; atomic force microscopy; high-pass filters; image enhancement; low-pass filters; transforms; AFM images; adaptive filters; adaptive low pass filter; adaptive multichannel highly nonlinear system; atomic force microscope image enhancement; contrast enhancement parameters; homomorphic processing; homomorphic transformation; human visual system model properties; input local characteristics; quality; single channel adaptive high pass filter; Adaptive filters; Adaptive systems; Atomic force microscopy; Dynamic range; Humans; Image enhancement; Low pass filters; Optical imaging; Retina; Visual system;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Radio Science Conference, 2000. 17th NRSC '2000. Seventeenth National
  • Conference_Location
    Minufiya
  • Print_ISBN
    977-5031-64-8
  • Type

    conf

  • DOI
    10.1109/NRSC.2000.838978
  • Filename
    838978