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Journal ArticleDOI

Anatomical-Functional Image Fusion by Information of Interest in Local Laplacian Filtering Domain

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TLDR
A novel method for performing anatomical magnetic resonance imaging-functional (positron emission tomography or single photon emission computed tomography) image fusion is presented and can obtain better performance, compared with the state-of-the-art fusion methods.
Abstract
A novel method for performing anatomical magnetic resonance imaging-functional (positron emission tomography or single photon emission computed tomography) image fusion is presented. The method merges specific feature information from input image signals of a single or multiple medical imaging modalities into a single fused image, while preserving more information and generating less distortion. The proposed method uses a local Laplacian filtering-based technique realized through a novel multi-scale system architecture. First, the input images are generated in a multi-scale image representation and are processed using local Laplacian filtering. Second, at each scale, the decomposed images are combined to produce fused approximate images using a local energy maximum scheme and produce the fused residual images using an information of interest-based scheme. Finally, a fused image is obtained using a reconstruction process that is analogous to that of conventional Laplacian pyramid transform. Experimental results computed using individual multi-scale analysis-based decomposition schemes or fusion rules clearly demonstrate the superiority of the proposed method through subjective observation as well as objective metrics. Furthermore, the proposed method can obtain better performance, compared with the state-of-the-art fusion methods.

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Citations
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Journal ArticleDOI

An Improved Hybrid Network With a Transformer Module for Medical Image Fusion

TL;DR: Wang et al. as mentioned in this paper propose a hybrid network combining a CNN and a transformer module to model both long-range and short-range dependencies, and construct a self-adaptive weight fusion rule that automatically measures salient features.
Journal ArticleDOI

Multimodal medical image fusion based on intuitionistic fuzzy sets and weighted local energy in nsst domain

TL;DR: The efficacy of the proposed fuzzy-based method is verifiable by five different modalities of anatomical and functional images, and both subjective and objective calculations showed better results than existing methods.
Journal ArticleDOI

An Improved Hybrid Network With a Transformer Module for Medical Image Fusion

TL;DR: Li et al. as discussed by the authors divide the medical images into two attributes, namely pixel intensity distribution attributes and texture attributes, and design two self-reconstruction tasks to mine as many specific features as possible.
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A data-driven analysis of global research trends in medical image: A survey

TL;DR: Wang et al. as discussed by the authors used several basic bibliometric indexes to characterize the global trends of medical image research from 1993 to 2022, including yearly output, active journals, important authors, active institutions, and main countries.
References
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Journal ArticleDOI

Image quality assessment: from error visibility to structural similarity

TL;DR: In this article, a structural similarity index is proposed for image quality assessment based on the degradation of structural information, which can be applied to both subjective ratings and objective methods on a database of images compressed with JPEG and JPEG2000.
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The Laplacian Pyramid as a Compact Image Code

TL;DR: A technique for image encoding in which local operators of many scales but identical shape serve as the basis functions, which tends to enhance salient image features and is well suited for many image analysis tasks as well as for image compression.
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Image information and visual quality

TL;DR: An image information measure is proposed that quantifies the information that is present in the reference image and how much of this reference information can be extracted from the distorted image and combined these two quantities form a visual information fidelity measure for image QA.
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Fast Discrete Curvelet Transforms

TL;DR: This paper describes two digital implementations of a new mathematical transform, namely, the second generation curvelet transform in two and three dimensions, based on unequally spaced fast Fourier transforms, while the second is based on the wrapping of specially selected Fourier samples.
Journal ArticleDOI

The Nonsubsampled Contourlet Transform: Theory, Design, and Applications

TL;DR: This paper proposes a design framework based on the mapping approach, that allows for a fast implementation based on a lifting or ladder structure, and only uses one-dimensional filtering in some cases.
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