Infrared imaging in histopathology: Is a unified approach possible?

IF 0.3 Q4 SPECTROSCOPY Biomedical Spectroscopy and Imaging Pub Date : 2017-01-05 DOI:10.3233/BSI-160151
E. Goormaghtigh
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引用次数: 18

Abstract

BACKGROUND: infrared imaging has emerged as a new promising tool in histopathology to provide label free analysis of tissue sections. Interestingly, infrared imaging has the potential to measure many markers at the same time, on one section, without staining. It has been demonstrated to deliver accurate results in numerous cancer pathologies. Yet, today, it is not used in routine diagnostics. The gap between the demonstrated potential and the applications is striking. The reasons why FTIR imaging is not used in the clinics are multiple but one of them is a major obstacle: the diversity of sample preparation, image recording parameters and pre-analytical methods used by the different research groups. This diversity prevents comparison of data and thereby the large scale validation necessary to enter the medical world. OBJECTIVE: we will briefly review here the main aspects of data acquisition and processing used in infrared imaging of tissue sections for which a common approach should be considered. RESULTS: considering requirement for spectral histopathology, the development of the technology and the literature on this topic, guidelines ruling sample preparation and pre-analytical methods do emerge. CONCLUSIONS: consensus values are proposed for most parameters whose current diversity prevents the exchange of data among institutions and thereby the validation of the method on a large scale.
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组织病理学中的红外成像:统一的方法可能吗?
背景:红外成像已成为组织病理学中一种新的有前途的工具,可以提供组织切片的无标记分析。有趣的是,红外成像有可能在一个切片上同时测量许多标记物,而无需染色。它已被证明在许多癌症病理中提供准确的结果。然而,今天,它还没有被用于常规诊断。所展示的潜力与应用之间的差距是惊人的。FTIR成像不用于临床的原因有多个,但其中一个是主要障碍:不同研究小组使用的样品制备、图像记录参数和预分析方法的多样性。这种多样性阻止了数据的比较,从而阻止了进入医学界所需的大规模验证。目的:我们将在这里简要回顾组织切片红外成像中使用的数据采集和处理的主要方面,应该考虑一种常见的方法。结果:考虑到光谱组织病理学的要求、技术的发展和有关该主题的文献,确实出现了关于样品制备和预分析方法的指导方针。结论:对大多数参数提出了共识值,这些参数目前的多样性阻碍了机构之间的数据交换,从而阻碍了该方法的大规模验证。
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期刊介绍: Biomedical Spectroscopy and Imaging (BSI) is a multidisciplinary journal devoted to the timely publication of basic and applied research that uses spectroscopic and imaging techniques in different areas of life science including biology, biochemistry, biotechnology, bionanotechnology, environmental science, food science, pharmaceutical science, physiology and medicine. Scientists are encouraged to submit their work for publication in the form of original articles, brief communications, rapid communications, reviews and mini-reviews. Techniques covered include, but are not limited, to the following: • Vibrational Spectroscopy (Infrared, Raman, Teraherz) • Circular Dichroism Spectroscopy • Magnetic Resonance Spectroscopy (NMR, ESR) • UV-vis Spectroscopy • Mössbauer Spectroscopy • X-ray Spectroscopy (Absorption, Emission, Photoelectron, Fluorescence) • Neutron Spectroscopy • Mass Spectroscopy • Fluorescence Spectroscopy • X-ray and Neutron Scattering • Differential Scanning Calorimetry • Atomic Force Microscopy • Surface Plasmon Resonance • Magnetic Resonance Imaging • X-ray Imaging • Electron Imaging • Neutron Imaging • Raman Imaging • Infrared Imaging • Terahertz Imaging • Fluorescence Imaging • Near-infrared spectroscopy.
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