Gaussian of Differences: A Simple and Efficient General Image Fusion Method

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Date

2023

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Volume Title

Publisher

MDPI

Open Access Color

GOLD

Green Open Access

Yes

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38

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96

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No
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Top 10%
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Abstract

The separate analysis of images obtained from a single source using different camera settings or spectral bands, whether from one or more than one sensor, is quite difficult. To solve this problem, a single image containing all of the distinctive pieces of information in each source image is generally created by combining the images, a process called image fusion. In this paper, a simple and efficient, pixel-based image fusion method is proposed that relies on weighting the edge information associated with each pixel of all of the source images proportional to the distance from their neighbors by employing a Gaussian filter. The proposed method, Gaussian of differences (GD), was evaluated using multi-modal medical images, multi-sensor visible and infrared images, multi-focus images, and multi-exposure images, and was compared to existing state-of-the-art fusion methods by utilizing objective fusion quality metrics. The parameters of the GD method are further enhanced by employing the pattern search (PS) algorithm, resulting in an adaptive optimization strategy. Extensive experiments illustrated that the proposed GD fusion method ranked better on average than others in terms of objective quality metrics and CPU time consumption.

Description

Kurban, Rifat/0000-0002-0277-2210

Keywords

General Image Fusion, Gaussian of Differences, Multi-Focus Image Fusion, Medical Image Fusion, Infrared and Visible Image Fusion, Multi-Exposure Image Fusion, Image Quality Metrics, Pattern Search Optimization, Gaussian of differences, infrared and visible image fusion, multi-focus image fusion, Science, Physics, QC1-999, multi-exposure image fusion, Q, Astrophysics, medical image fusion, Article, QB460-466, image quality metrics, general image fusion, general image fusion; Gaussian of differences; multi-focus image fusion; medical image fusion; infrared and visible image fusion; multi-exposure image fusion; image quality metrics; pattern search optimization, pattern search optimization

Turkish CoHE Thesis Center URL

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WoS Q

Q2

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Q2
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OpenCitations Citation Count
18

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Entropy

Volume

25

Issue

8

Start Page

1215

End Page

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Scopus : 24

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24

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15

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1

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