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中国物理学会期刊

共光路连续太赫兹反射和衰减全反射成像

CSTR: 32037.14.aps.70.20210182

Common path continuous terahertz reflection and attenuated total reflection imaging

CSTR: 32037.14.aps.70.20210182
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  • 太赫兹成像技术是医学成像的候选技术之一, 尤其是连续太赫兹反射和衰减全反射成像有望实现术中快速成像, 是目前研究的热点课题. 本文理论研究了成像角度对反射信号和衰减全反射穿透深度的影响, 获得了适用于反射和衰减全反射成像的太赫兹波成像角度. 在此基础上设计了全反射棱镜, 通过反射窗口和全反射棱镜快速切换的方式, 实现了共光路连续太赫兹反射和衰减全反射双模式成像. 以蒸馏水和猪肉为样品, 实验研究了连续太赫兹反射和衰减全反射成像. 结果表明, 与反射成像相比, 连续太赫兹衰减全反射成像具有成像分辨率高、图像对比度高和信号稳定性高的优点, 且可以准确获得样品反射率. 太赫兹衰减全反射成像技术更有助于实现样品的高灵敏度成像.

     

    Terahertz imaging technology is one of the candidate technologies for medical imaging. In particular, continuous terahertz reflection and attenuated total reflection imaging are expected to achieve rapid intraoperative imaging, which is hot research topic at present. In order to realize the rapid multi-dimensional and high-quality terahertz imaging detection of sample, it is necessary to study the common optical path continuous terahertz reflection/attenuated total reflection dual-mode imaging system based on point scanning. By using the Fresnel formula and the penetration depth formula of evanescent wave, the influence of imaging angle on the reflected signal and the penetration depth of attenuated total reflection are studied theoretically in this paper. The imaging angle of terahertz wave suitable for both reflection and attenuation total reflection imaging is obtained. Based on this, an isoscele total reflection prism with a base angle of 49° is designed. The dual-mode imaging of common optical path continuous terahertz reflection and attenuated total reflection is realized by quickly switching between reflection window and total reflection prism. The reflection and attenuation total reflection imaging modes have imaging resolutions of 400 μm and 500 μm, respectively. Continuous terahertz reflection and attenuated total reflection imaging are experimentally studied by using distilled water and pork as samples. The results show that the relative reflectance of the sample obtained in the attenuated total reflection imaging mode fluctuates within a range of 1%, and the image contrast is 9 times that of the reflection imaging mode. Moreover, attenuated total reflection imaging can effectively identify the sample with the length less than 1 mm. Thus, compared with reflection imaging, continuous terahertz attenuated total reflection imaging has the advantages of high image resolution, high image contrast and highr signal stability, and can accurately obtain the reflectivity of sample. The terahertz attenuated total reflection imaging technology is more helpful in achieving high sensitivity imaging of samples. By combining reflection and attenuated total reflection imaging modes, the advantages of different imaging modes can be compensated for and the performance of the imaging system can be further improved. This common path continuous terahertz reflection and attenuated total reflection dual mode imaging system is expected to achieve a high sensitivity detection of sample.

     

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