DocumentCode
1653092
Title
Reversible image sequence compression method using motion estimation with interpolation
Author
Urbano, Luis ; Alvano, Francisco D. ; Barreto, Raul ; Regidor, Juan C. ; Bruscianelli, Calogero ; Duvauferrier, Regie
Author_Institution
Dept. de Electronica y Circuitos, Simon Bolivar Univ., Caracas, Venezuela
fYear
1995
Firstpage
308
Lastpage
312
Abstract
A technique of Image Sequence Compression, whose application domain is medicine, is proposed in this work. It is an adaptation of the Walker-Rao scheme to an interpolation environment which preserves its fundamental advantage: the recursive motion estimation algorithm avoids sending the displacement vectors from transmitter to receiver, because they are obtained similarly at both ends. The parameters of the algorithm were varied in the tests, employing the zero order entropy of the error image as an indicator of the ideally achievable compression rate. This figure of merit was influenced by the application sequence of the decorrelation schemes. For all the processed sequences, the zero order entropy value of the error image in the intraframe-interframe case was lower than in the interframe-intraframe case. However, those results are inferior to the ones obtained just using interframe compression with motion compensation, which in turn, are worse than plain unregistered interpolation. These findings coincide significantly with evaluations done by other researchers, even though the improvements proposed by them were implemented in this work
Keywords
data compression; image coding; image sequences; interpolation; medical image processing; motion compensation; motion estimation; Walker-Rao scheme; decorrelation schemes; error image; image sequence compression; interframe-intraframe case; interpolation environment; intraframe-interframe case; medicine; recursive motion estimation algorithm; reversible image sequence compression; zero order entropy; Biomedical imaging; Decorrelation; Entropy; Image coding; Image sequences; Interpolation; Motion compensation; Motion estimation; Testing; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Devices, Circuits and Systems, 1995., Proceedings of the 1995 First IEEE International Caracas Conference on
Conference_Location
Caracas
Print_ISBN
0-7803-2672-5
Type
conf
DOI
10.1109/ICCDCS.1995.499166
Filename
499166
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