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Erschienen in: Medical & Biological Engineering & Computing 9/2018

13.02.2018 | Original Article

Detail-enhanced multimodality medical image fusion based on gradient minimization smoothing filter and shearing filter

verfasst von: Xingbin Liu, Wenbo Mei, Huiqian Du

Erschienen in: Medical & Biological Engineering & Computing | Ausgabe 9/2018

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Abstract

In this paper, a detail-enhanced multimodality medical image fusion algorithm is proposed by using proposed multi-scale joint decomposition framework (MJDF) and shearing filter (SF). The MJDF constructed with gradient minimization smoothing filter (GMSF) and Gaussian low-pass filter (GLF) is used to decompose source images into low-pass layers, edge layers, and detail layers at multiple scales. In order to highlight the detail information in the fused image, the edge layer and the detail layer in each scale are weighted combined into a detail-enhanced layer. As directional filter is effective in capturing salient information, so SF is applied to the detail-enhanced layer to extract geometrical features and obtain directional coefficients. Visual saliency map-based fusion rule is designed for fusing low-pass layers, and the sum of standard deviation is used as activity level measurement for directional coefficients fusion. The final fusion result is obtained by synthesizing the fused low-pass layers and directional coefficients. Experimental results show that the proposed method with shift-invariance, directional selectivity, and detail-enhanced property is efficient in preserving and enhancing detail information of multimodality medical images.

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Metadaten
Titel
Detail-enhanced multimodality medical image fusion based on gradient minimization smoothing filter and shearing filter
verfasst von
Xingbin Liu
Wenbo Mei
Huiqian Du
Publikationsdatum
13.02.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Medical & Biological Engineering & Computing / Ausgabe 9/2018
Print ISSN: 0140-0118
Elektronische ISSN: 1741-0444
DOI
https://doi.org/10.1007/s11517-018-1796-1

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