The School of Control Science and Engineering, Tiangong University, Tianjin, 300387, People's Republic of China.
Tianjin Key Laboratory of Intelligent Control of Electrical Equipment, Tiangong University, Tianjin, 300387, People's Republic of China.
Med Biol Eng Comput. 2023 Oct;61(10):2497-2510. doi: 10.1007/s11517-023-02848-5. Epub 2023 May 24.
Microwave imaging is one of the rapidly developing frontier disciplines in the field of modern medical imaging. The development of microwave imaging algorithms for reconstructing stroke images is discussed in this paper. Compared with traditional stroke detection and diagnosis techniques, microwave imaging has the advantages of low price and no ionizing radiation hazards. The research hotspots of microwave imaging algorithms in the field of stroke are mainly reflected in the design and improvement of microwave tomography, radar imaging, and deep learning imaging. However, the current research lacks the analysis and combing of microwave imaging algorithms. In this paper, the development of common microwave imaging algorithms is reviewed. The concept, research status, current research hotspots and difficulties, and future development trends of microwave imaging algorithms are systematically expounded. The microwave antenna is used to collect scattered signals, and a series of microwave imaging algorithms are used to reconstruct the stroke image. The classification diagram and flow chart of the algorithms are shown in this Figure. (The classification diagram and flow chart are based on the microwave imaging algorithms.).
微波成像是现代医学成像领域中迅速发展的前沿学科之一。本文讨论了用于重建中风图像的微波成像算法的发展。与传统的中风检测和诊断技术相比,微波成像是具有价格低廉、无电离辐射危害等优点。微波成像算法在中风领域的研究热点主要体现在微波层析成像、雷达成像和深度学习成像的设计和改进上。然而,目前的研究缺乏对微波成像算法的分析和梳理。本文回顾了常见的微波成像算法的发展,系统地阐述了微波成像算法的概念、研究现状、当前研究热点和难点以及未来的发展趋势。微波天线用于收集散射信号,然后使用一系列微波成像算法来重建中风图像。图中显示了算法的分类图和流程图。(分类图和流程图基于微波成像算法。)