Reconstruction of color biomedical images by means of quaternion generic Jacobi-Fourier moments in the framework of polar pixels

A detailed analysis of the quaternion generic Jacobi-Fourier moments (QGJFMs) for color image description is presented. In order to reach numerical stability, a recursive approach is used during the computation of the generic Jacobi radial polynomials. Moreover, a search criterion is performed to es...

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Veröffentlicht in:Journal of medical imaging (Bellingham, Wash.) Wash.), 2016-01, Vol.3 (1), p.014004-014004
Hauptverfasser: Camacho-Bello, César, Padilla-Vivanco, Alfonso, Toxqui-Quitl, Carina, Báez-Rojas, José Javier
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Sprache:eng
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Zusammenfassung:A detailed analysis of the quaternion generic Jacobi-Fourier moments (QGJFMs) for color image description is presented. In order to reach numerical stability, a recursive approach is used during the computation of the generic Jacobi radial polynomials. Moreover, a search criterion is performed to establish the best values for the parameters α and β of the radial Jacobi polynomial families. Additionally, a polar pixel approach is taken into account to increase the numerical accuracy in the calculation of the QGJFMs. To prove the mathematical theory, some color images from optical microscopy and human retina are used. Experiments and results about color image reconstruction are presented.
ISSN:2329-4302
2329-4310
DOI:10.1117/1.JMI.3.1.014004