School of Physics and Astronomy, University of Exeter, Exeter, UK.
Cranfield Forensic Institute, Cranfield University, Shrivenham, UK.
Anal Methods. 2023 Mar 30;15(13):1620-1630. doi: 10.1039/d2ay01197b.
Microcalcifications play an important role in cancer detection. They are evaluated by their radiological and histological characteristics but it is challenging to find a link between their morphology, their composition and the nature of a specific type of breast lesion. Whilst there are some mammographic features that are either typically benign or typically malignant often the appearances are indeterminate. Here, we explore a large range of vibrational spectroscopic and multiphoton imaging techniques in order to gain more information about the composition of the microcalcifications. For the first time, we validated the presence of carbonate ions in the microcalcifications by O-PTIR and Raman spectroscopy at the same time, the same location and the same high resolution (0.5 μm). Furthermore, the use of multiphoton imaging allowed us to create stimulated Raman histology (SRH) images which mimic histological images with all chemical information. In conclusion, we established a protocol for efficiently analysing the microcalcifications by iteratively refining the area of interest.
微钙化在癌症检测中起着重要作用。它们的影像学和组织学特征进行评估,但很难找到它们的形态、组成与特定类型的乳腺病变之间的联系。虽然有些乳腺 X 线摄影特征要么典型良性,要么典型恶性,但通常表现为不确定。在这里,我们探索了一系列广泛的振动光谱和多光子成像技术,以便更多地了解微钙化的组成。我们首次通过 O-PTIR 和拉曼光谱同时、在同一位置和相同的高分辨率(0.5μm)下验证了微钙化中碳酸根离子的存在。此外,多光子成像的应用使我们能够创建刺激拉曼组织学(SRH)图像,这些图像可以模拟具有所有化学信息的组织学图像。总之,我们建立了一种通过迭代细化感兴趣区域来高效分析微钙化的方案。