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一种基于融合网络和HFCMIK分割的脑肿瘤分类深度概率感知与学习模型。

A Deep Probabilistic Sensing and Learning Model for Brain Tumor Classification With Fusion-Net and HFCMIK Segmentation.

作者信息

Ramprasad M V S, Rahman Md Zia Ur, Bayleyegn Masreshaw Demelash

机构信息

Koneru Lakshmaiah Education FoundationK L University Guntur 522302 India.

GITAM (Deemed to be University) Visakhapatnam AP 522502 India.

出版信息

IEEE Open J Eng Med Biol. 2022 Oct 25;3:178-188. doi: 10.1109/OJEMB.2022.3217186. eCollection 2022.

Abstract

Implementation of an artificial intelli gence-based medical diagnosis tool for brain tumor classification, which is called the BTFSC-Net. Medical images are preprocessed using a hybrid probabilistic wiener filter (HPWF) The deep learning convolutional neural network (DLCNN) was utilized to fuse MRI and CT images with robust edge analysis (REA) properties, which are used to identify the slopes and edges of source images. Then, hybrid fuzzy c-means integrated k-means (HFCMIK) clustering is used to segment the disease affected region from the fused image. Further, hybrid features such as texture, colour, and low-level features are extracted from the fused image by using gray-level cooccurrence matrix (GLCM), redundant discrete wavelet transform (RDWT) descriptors. Finally, a deep learning based probabilistic neural network (DLPNN) is used to classify malignant and benign tumors. The BTFSC-Net attained 99.21% of segmentation accuracy and 99.46% of classification accuracy. The simulations showed that BTFSC-Net outperformed as compared to existing methods.

摘要

实现了一种基于人工智能的脑肿瘤分类医学诊断工具,即BTFSC-Net。医学图像使用混合概率维纳滤波器(HPWF)进行预处理。利用深度学习卷积神经网络(DLCNN)融合具有鲁棒边缘分析(REA)特性的MRI和CT图像,这些特性用于识别源图像的斜率和边缘。然后,使用混合模糊c均值集成k均值(HFCMIK)聚类从融合图像中分割出疾病受影响区域。此外,通过使用灰度共生矩阵(GLCM)、冗余离散小波变换(RDWT)描述符从融合图像中提取纹理、颜色和低级特征等混合特征。最后,使用基于深度学习的概率神经网络(DLPNN)对恶性和良性肿瘤进行分类。BTFSC-Net获得了99.21%的分割准确率和99.46%的分类准确率。模拟结果表明,与现有方法相比,BTFSC-Net表现更优。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f23b/9870266/d053fd45cd3e/bayle1-3217186.jpg

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