Chen Hua, Lee Wen-Jeng, Huang Hsin-Yi, Chiu Chui-Min, Tsai Yuan-Fu, Tseng Tzu-Fang, Lu Jen-Tang, Lai Wei-Ling, Sun Chi-Kuang
Department of Electrical Engineering and Graduate Institute of Photonics and Optoelectronics, National Taiwan University, Taipei, 10617, Taiwan.
Opt Express. 2011 Sep 26;19(20):19523-31. doi: 10.1364/OE.19.019523.
Based on tissues from 20 female patients (mean age: 53 years; rang: 36-72 years), we examine the performance of a room-temperature-operated terahertz (THz) fiber-scanning near-field microscopy to diagnose slices of breast tissues. The specimens were frozen sliced and then measured in a thawed state without dehydration. We performed the imaging at 320 GHz. Our study indicates that images acquired in the THz transmission-illumination mode can all clearly distinguish breast tumor tissues from normal tissues without H&E staining. Due to its capability to perform quantitative analysis and to allow follow-up staining and traditional pathohistological analysis, our study indicates great potential of the THz fiber-scanning near-field microscopy for future automation, which is critical for fast and complete pre-screening on breast tumor pathological examinations and for assisting quick definition of the tumor margins during the surgical procedure such as breast-conserving surgery.
基于20名女性患者的组织样本(平均年龄:53岁;范围:36 - 72岁),我们研究了室温操作的太赫兹(THz)光纤扫描近场显微镜在诊断乳腺组织切片方面的性能。样本经冷冻切片后,在解冻状态下未经脱水处理就进行测量。我们在320吉赫兹频率下进行成像。我们的研究表明,在太赫兹透射照明模式下获取的图像,无需苏木精 - 伊红(H&E)染色就能清晰区分乳腺肿瘤组织和正常组织。由于其具备进行定量分析以及后续染色和传统病理组织学分析的能力,我们的研究表明太赫兹光纤扫描近场显微镜在未来自动化方面具有巨大潜力,这对于乳腺肿瘤病理检查的快速全面预筛查以及在诸如保乳手术等外科手术过程中辅助快速确定肿瘤边界至关重要。