Appl Opt. 2022 Feb 10;61(5):B297-B306. doi: 10.1364/AO.445337.
Low-level laser therapy (LLLT) is a therapeutic tool that uses the photobiochemical interaction between light and tissue. Its effectiveness is controversial due to a strong dependence on dosimetric parameters. In this work, we demonstrate that digital holographic microscopy is an effective label-free imaging technique to analyze the effects of LLLT on biological cells, and we propose the full methodology to create correct synthetic aperture phase maps for further extensive, highly accurate statistical analysis. The proposed methodology has been designed to provide a basis for many other biological experiments using quantitative phase imaging. We use SHSY-5Y and HaCaT cells irradiated with different doses of red light for the experiment. The analysis shows quantitative changes in cell dry mass density and the projected cell surface in response to different radiation doses.
低水平激光疗法(LLLT)是一种利用光与组织之间的光生物化学相互作用的治疗工具。由于强烈依赖于剂量学参数,其有效性存在争议。在这项工作中,我们证明数字全息显微镜是一种有效的无标记成像技术,可以分析 LLLT 对生物细胞的影响,并且我们提出了完整的方法来创建正确的合成孔径相位图,以进行进一步的广泛、高度准确的统计分析。所提出的方法旨在为使用定量相衬成像的许多其他生物学实验提供基础。我们使用 SHSY-5Y 和 HaCaT 细胞进行实验,用不同剂量的红光照射。分析表明,细胞干质量密度和投影细胞表面的定量变化对不同的辐射剂量有响应。