In this work, it is shown that the generalized recursive interpolation (GRINT) proposed is the most effective progressive technique for inter-frame reversible compression of tomographic sections that typically occur in the medical field. An image sequence is decimated by a factor 2, first along rows only, then along columns only, and eventually along slices only, recursively in a sequel, thus creating a gray-level hyperpyramid whose number of voxels halves at every level. The top of the pyramid (root) is stored and then directionally interpolated by means of a 1D kernel. Interpolation errors with the underlying equally-sized hyperlayer are stored as well. The same procedure is repeated, until the image sequence is completely decomposed. The advantage of the novel scheme with respect to other noncausal DPCM schemes is twofold: firstly interpolation is performed from all error-free values, thereby reducing the variance of residuals; secondly different correlation values along rows, columns and sections can be exploited for a better decorrelation.

Three-dimensional Lossless Compression Based on a Separable Generalized Recursive Interpolation

B Aiazzi;S Baronti;L Alparone
1996

Abstract

In this work, it is shown that the generalized recursive interpolation (GRINT) proposed is the most effective progressive technique for inter-frame reversible compression of tomographic sections that typically occur in the medical field. An image sequence is decimated by a factor 2, first along rows only, then along columns only, and eventually along slices only, recursively in a sequel, thus creating a gray-level hyperpyramid whose number of voxels halves at every level. The top of the pyramid (root) is stored and then directionally interpolated by means of a 1D kernel. Interpolation errors with the underlying equally-sized hyperlayer are stored as well. The same procedure is repeated, until the image sequence is completely decomposed. The advantage of the novel scheme with respect to other noncausal DPCM schemes is twofold: firstly interpolation is performed from all error-free values, thereby reducing the variance of residuals; secondly different correlation values along rows, columns and sections can be exploited for a better decorrelation.
1996
Istituto di Fisica Applicata - IFAC
Inglese
P. Delogne
Proceedings of ICIP-96: 1996 IEEE International Conference on Image Processing
1996 International Conference on Image Processing (ICIP-96)
1
85
88
4
0-7803-3259-8
http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=559439
IEEE-Institute Of Electrical And Electronics Engineers Inc.
Piscataway
STATI UNITI D'AMERICA
Sì, ma tipo non specificato
16-19 Settembre 1996
Losanna, Svizzera
Three-dimensional lossless compression
separable generalized recursive interpolation
tomographic sections
hyper-pyramid
interpolation errors
3
none
B. Aiazzi; P. S. Alba; S. Baronti; L. Alparone
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/515
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