Xiao Feng, Zhang Xiaoqiuyan, Xu Xingxing, Zhang Tianyu, Tang Fu, Yin Haowei, Hu Tao, Lei Lei, Cheng Li, Hu Min
Terahertz Research Center, School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China.
Key Laboratory of Terahertz Technology, Ministry of Education, Chengdu 610054, China.
Biomed Opt Express. 2024 Aug 13;15(9):5229-5237. doi: 10.1364/BOE.527554. eCollection 2024 Sep 1.
The early stage of dental caries, i.e. demineralization, has always been a topic of concern to dentists. Understanding the essential mechanism of its occurrence is of great significance for the prevention and treatment of dental caries. However, owing to limitations in resolution and the detection capabilities of diagnostic tools, the study of enamel demineralization has always been a challenge. Terahertz (THz) technology, especially the combination of scanning near-field optical microscopy (s-SNOM) and THz time-domain spectroscopy (TDS), due to its nanoscale resolution, has shown great advantages in the field of biological imaging. Here, a THz s-SNOM system is used to perform near-field imaging of enamel before and after demineralization at the nanoscale. It can be found that near-field signals decrease significantly after demineralization. This is due to the changes of the crystal lattice and the transfer of mineral ions during demineralization, which leads to a decrease in the permittivity of the enamel. The novel approach in this study reveals the essence of demineralization and lays the groundwork for additional research and potential interventions.
龋齿的早期阶段,即脱矿,一直是牙医关注的话题。了解其发生的本质机制对龋齿的预防和治疗具有重要意义。然而,由于诊断工具的分辨率和检测能力有限,牙釉质脱矿的研究一直是一项挑战。太赫兹(THz)技术,特别是扫描近场光学显微镜(s-SNOM)与太赫兹时域光谱(TDS)的结合,因其纳米级分辨率,在生物成像领域显示出巨大优势。在此,使用太赫兹s-SNOM系统对脱矿前后的牙釉质进行纳米级近场成像。可以发现脱矿后近场信号显著降低。这是由于脱矿过程中晶格的变化和矿物离子的转移,导致牙釉质介电常数降低。本研究中的新方法揭示了脱矿的本质,为进一步的研究和潜在干预奠定了基础。