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Graph-Based Motion Artifacts Detection Method from Head Computed Tomography Images

delete2022-07-28
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OA
AI
Y
Yiwen Liu *
T
Tao Wen
孙
孙薇 (Wei Sun)
Z
Zhenyu Liu
X
Xiaoying Song
X
Xuan He
S
Shuo Zhang
Z
Zhenning Wu
DOI:10.3390/s22155666delete
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摘要

摘要

En 中文
Computed tomography (CT) images play an important role due to effectiveness and accessibility, however, motion artifacts may obscure or simulate pathology and dramatically degrade the diagnosis accuracy. In recent years, convolutional neural networks (CNNs) have achieved state-of-the-art performance in medical imaging due to the powerful learning ability with the help of the advanced hardware technology. Unfortunately, CNNs have significant overhead on memory usage and computational resources and are labeled 'black-box' by scholars for their complex underlying structures. To this end, an interpretable graph-based method has been proposed for motion artifacts detection from head CT images in this paper. From a topological perspective, the artifacts detection problem has been reformulated as a complex network classification problem based on the network topological characteristics of the corresponding complex networks. A motion artifacts detection method based on complex networks (MADM-CN) has been proposed. Firstly, the graph of each CT image is constructed based on the theory of complex networks. Secondly, slice-to-slice relationship has been explored by multiple graph construction. In addition, network topological characteristics are investigated locally and globally, consistent topological characteristics including average degree, average clustering coefficient have been utilized for classification. The experimental results have demonstrated that the proposed MADM-CN has achieved better performance over conventional machine learning and deep learning methods on a real CT dataset, reaching up to 98% of the accuracy and 97% of the sensitivity.
Keyword:
complex networks
computed tomography images
motion artifacts detection
network topological characteristics
classification
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期刊

Sensors 封面图
Sensors
IF:
3.5
论文数:
7.2W
被引数:
20.9W

机构

N
northeastern university - china
学者数:
3.1W
论文数: 2.7W
被引数: 37
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