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Multi-modal medical image fusion using improved dual-channel PCNN.
Sinha, Adarsh; Agarwal, Rahul; Kumar, Vinay; Garg, Nitin; Pundir, Dhruv Singh; Singh, Harsimran; Rani, Ritu; Panigrahy, Chinmaya.
Afiliação
  • Sinha A; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Agarwal R; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Kumar V; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Garg N; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Pundir DS; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Singh H; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Rani R; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India.
  • Panigrahy C; Computer Science and Engineering, Thapar Institute of Engineering & Technology, Patiala, 147004, Punjab, India. panigrahy.chinmaya@gmail.com.
Med Biol Eng Comput ; 2024 Apr 24.
Article em En | MEDLINE | ID: mdl-38656734
ABSTRACT
This paper proposes a medical image fusion method in the non-subsampled shearlet transform (NSST) domain to combine a gray-scale image with the respective pseudo-color image obtained through different imaging modalities. The proposed method applies a novel improved dual-channel pulse-coupled neural network (IDPCNN) model to fuse the high-pass sub-images, whereas the Prewitt operator is combined with maximum regional energy (MRE) to construct the fused low-pass sub-image. First, the gray-scale image and luminance of the pseudo-color image are decomposed using NSST to find the respective sub-images. Second, the low-pass sub-images are fused by the Prewitt operator and MRE-based rule. Third, the proposed IDPCNN is utilized to get the fused high-pass sub-images from the respective high-pass sub-images. Fourth, the luminance of the fused image is obtained by applying inverse NSST on the fused sub-images, which is combined with the chrominance components of the pseudo-color image to construct the fused image. A total of 28 diverse medical image pairs, 11 existing methods, and nine objective metrics are used in the experiment. Qualitative and quantitative fusion results show that the proposed method is competitive with and even outpaces some of the existing medical fusion approaches. It is also shown that the proposed method efficiently combines two gray-scale images.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Med Biol Eng Comput Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Med Biol Eng Comput Ano de publicação: 2024 Tipo de documento: Article