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The progress and perspectives of terahertz technology for diagnosis of neoplasms: a review

机译:太赫兹技术对肿瘤诊断的进展与观点:综述

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Over the past few decades, significant attention has been paid to the biomedical applications of terahertz (THz) technology. Nowadays, THz spectroscopy and imaging have allowed numerous demanding problems in the biological, medical, food, plant and pharmaceutical sciences to be solved. Among the biomedical applications, the label-free diagnosis of malignant and benign neoplasms represents one of the most attractive branches of THz technology. Despite this attractiveness, THz diagnosis methods are still far from being ready for use in medical practice. In this review, we consider modern research results in the THz diagnosis of malignant and benign neoplasms, along with the topical research and engineering problems which restrain the translation of THz technology to clinics. We start by analyzing the common models of THz-wave-tissue interactions and the effects of tissue exposure toTHz waves. Then, we discuss the existing modalities of THz spectroscopic and imaging systems, which have either already been applied in medical imaging, or hold strong potential. We summarize the earlier-reported and original results of the THz measurements of neoplasms with different nosology and localization. We pay attention to the origin of contrast between healthy and pathological tissues in the THz spectra and images, and discuss the prospects of THz technology in dnon-invasive, minimally invasive and intraoperative diagnosis, as well as in aiding histology. Finally, we review the challenging problems of THz diagnosis, as well as attempts to solve them, which should bring THz technology much closer to medical practice. This review allows one to objectively uncover the benefits and weaknesses of THz technology in the diagnosis of malignant and benign neoplasms.
机译:在过去的几十年中,已经向太赫兹(THz)技术的生物医学应用支付了重大关注。如今,THz光谱和成像使得在生物,医疗,食品,植物和制药科学中允许苛刻的问题。在生物医学应用中,无恶性和良性肿瘤的无标签诊断代表了THZ技术最具吸引力的分支之一。尽管这种吸引力,但诊断方法仍远未准备好用于医疗实践。在这篇综述中,我们考虑了现代研究导致恶性和良性肿瘤的诊断,以及局部的研究和工程问题,这些问题抑制了THZ技术翻译到诊所。首先分析Thz波组织相互作用的共同模型及组织曝光Tothz波的影响。然后,我们讨论了已经在医学成像中应用的THz光谱和成像系统的现有模式,或保持强大的潜力。我们总结了具有不同损伤和本地化的肿瘤的早期报告和原始结果。我们注意THz光谱和图像中健康和病理组织之间的对比起源,并讨论了DNON侵袭性,微创和术中诊断的THZ技术的前景,以及辅助组织学。最后,我们审查了THZ诊断的挑战性问题,以及试图解决它们,这应该将THZ技术带到医学实践中更接近。该审查允许人们客观地揭示THZ技术在恶性肿瘤和良性肿瘤的诊断中的益处和缺点。

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