Life Science Laboratory, Advanced Materials Laboratories, Sony Corporation, Tokyo Medical and Dental University, 1-5-45 Yushima Bunkyo-ku, Tokyo, 113-8510, Japan.
Phys Med Biol. 2010 Aug 21;55(16):4615-23. doi: 10.1088/0031-9155/55/16/001. Epub 2010 Jul 30.
We report on terahertz (THz) time-domain spectroscopy imaging of 10 microm thick histological sections. The sections are prepared according to standard pathological procedures and deposited on a quartz window for measurements in reflection geometry. Simultaneous acquisition of visible images enables registration of THz images and thus the use of digital pathology tools to investigate the links between the underlying cellular structure and specific THz information. An analytic model taking into account the polarization of the THz beam, its incidence angle, the beam shift between the reference and sample pulses as well as multiple reflections within the sample is employed to determine the frequency-dependent complex refractive index. Spectral images are produced through segmentation of the extracted refractive index data using clustering methods. Comparisons of visible and THz images demonstrate spectral differences not only between tumor and healthy tissues but also within tumors. Further visualization using principal component analysis suggests different mechanisms as to the origin of image contrast.
我们报告了太赫兹(THz)时域光谱成像 10 微米厚的组织切片。这些切片是按照标准病理程序制备的,并沉积在石英窗上,以便在反射几何中进行测量。可见光图像的同时采集使得 THz 图像的配准成为可能,从而可以使用数字病理学工具来研究潜在的细胞结构与特定 THz 信息之间的联系。采用了一种分析模型,该模型考虑了 THz 光束的偏振、入射角、参考脉冲和样品脉冲之间的光束偏移以及样品内的多次反射,以确定频率相关的复折射率。通过使用聚类方法对提取的折射率数据进行分割,生成光谱图像。可见图像和 THz 图像的比较不仅显示了肿瘤和健康组织之间的光谱差异,而且还显示了肿瘤内的差异。使用主成分分析进一步可视化表明,图像对比度的起源有不同的机制。