Near-Field Microwave Tomography of Biological Tissues: Future Perspectives.

Q3 Engineering
Andrew K Martusevich, Vladimir V Nazarov, Alexandra V Surovegina, Alexander V Novikov
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引用次数: 0

Abstract

This overview shows the mapping of specific visualization techniques, depth assessment of the structure of the underlying tissues and used wavelengths of radiation. Medical imaging is currently one of the most dynamically developing areas of medical science. The main aim of the review is a systematization of information on the current status of the microwave imaging of biological objects, primarily of body tissues. The main options of microwave sensing of biological objects are analyzed. Two basic techniques for sensing differing evaluation parameters are characterized. They are microwave thermometry (passive) and near-field resonance imaging. The physical principles of microwave sensing application are discussed. It is shown that the resonant near-field microwave tomography allows visualization of the structure of biological tissues on the basis of the spatial distribution of their electrodynamic characteristics - permittivity and conductivity. Potential areas for this method in dermatology, including dermatooncology, are shown. The known results of applying the method to patients with dermatoses are given. The informativeness of the technology in the early diagnosis of melanoma is shown. The prospects of microwave diagnostics in combustiology, reconstructive and plastic surgery are demonstrated. Thus, microwave sensing is a modern, dynamically developing method of biophysical assessment of body tissues. There is a strong indication of the feasibility of application of microwave sensing in combustiology (in different periods of burn disease), as well as in reconstructive surgery. Further research in this and other areas of biomedicine will significantly expand the range of possibilities of modern technologies of visualization.

生物组织的近场微波断层成像:未来展望。
本综述展示了特定可视化技术的映射,底层组织结构的深度评估和使用的辐射波长。医学影像学是目前医学科学中发展最活跃的领域之一。这篇综述的主要目的是对生物物体,主要是身体组织的微波成像现状的信息进行系统化。分析了生物物体微波传感的主要方案。介绍了两种不同评价参数感知的基本技术。它们是微波测温(被动)和近场磁共振成像。讨论了微波传感应用的物理原理。研究表明,共振近场微波层析成像技术可以根据生物组织的电动力学特性——介电常数和电导率的空间分布,对生物组织的结构进行可视化。该方法在皮肤病学,包括皮肤肿瘤学中的潜在应用领域。给出了将该方法应用于皮肤病患者的已知结果。显示了该技术在黑色素瘤早期诊断中的信息性。展望了微波诊断在燃烧、重建和整形外科中的应用前景。因此,微波传感是一种现代的、动态发展的身体组织生物物理评估方法。有一个强有力的迹象表明,微波传感应用于燃烧学(在烧伤疾病的不同时期),以及重建手术的可行性。在这方面和其他生物医学领域的进一步研究将大大扩大现代可视化技术的可能性范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Critical Reviews in Biomedical Engineering
Critical Reviews in Biomedical Engineering Engineering-Biomedical Engineering
CiteScore
1.80
自引率
0.00%
发文量
25
期刊介绍: Biomedical engineering has been characterized as the application of concepts drawn from engineering, computing, communications, mathematics, and the physical sciences to scientific and applied problems in the field of medicine and biology. Concepts and methodologies in biomedical engineering extend throughout the medical and biological sciences. This journal attempts to critically review a wide range of research and applied activities in the field. More often than not, topics chosen for inclusion are concerned with research and practice issues of current interest. Experts writing each review bring together current knowledge and historical information that has led to the current state-of-the-art.
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