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In-Vivo and Ex-Vivo Tissue Analysis through Hyperspectral Imaging Techniques: Revealing the Invisible Features of Cancer

机译:通过高光谱成像技术进行体内和前体内组织分析:揭示癌症的隐形特征

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摘要

In contrast to conventional optical imaging modalities, hyperspectral imaging (HSI) is able to capture much more information from a certain scene, both within and beyond the visual spectral range (from 400 to 700 nm). This imaging modality is based on the principle that each material provides different responses to light reflection, absorption, and scattering across the electromagnetic spectrum. Due to these properties, it is possible to differentiate and identify the different materials/substances presented in a certain scene by their spectral signature. Over the last two decades, HSI has demonstrated potential to become a powerful tool to study and identify several diseases in the medical field, being a non-contact, non-ionizing, and a label-free imaging modality. In this review, the use of HSI as an imaging tool for the analysis and detection of cancer is presented. The basic concepts related to this technology are detailed. The most relevant, state-of-the-art studies that can be found in the literature using HSI for cancer analysis are presented and summarized, both in-vivo and ex-vivo. Lastly, we discuss the current limitations of this technology in the field of cancer detection, together with some insights into possible future steps in the improvement of this technology.
机译:与传统的光学成像方式相比,HypersPectral成像(HSI)能够从某个场景中捕获更多信息,包括在视觉频谱范围内和超过400到700nm)。该成像模态基于各种材料在电磁谱上提供不同响应的原理,可以提供不同的反射,吸收和散射。由于这些特性,可以通过它们的光谱签名来区分和识别在某个场景中呈现的不同材料/物质。在过去的二十年中,HSI已经表现出潜力成为一种有力的工具来研究和识别医学领域的几种疾病,是非接触,非电离和无标签的成像模态。在本次综述中,提出了使用HSI作为分析和检测癌症的成像工具。详细说明了与此技术相关的基本概念。在体内和前体内,展示和总结了可以在使用HSI的文献中找到的最相关的最先进的研究。最后,我们讨论了这种技术在癌症检测领域的当前限制,以及在改善这项技术的情况下有可能的一些洞察力。

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