El-Sadek Ibrahim Abd, Miyazawa Arata, Shen Larina Tzu-Wei, Makita Shuichi, Mukherjee Pradipta, Lichtenegger Antonia, Matsusaka Satoshi, Yasuno Yoshiaki
Computational Optics Group, University of Tsukuba, Tsukuba, Ibaraki 305-8573, Japan.
Department of Physics, Faculty of Science, Damietta University, New Damietta City, 34517, Damietta, Egypt.
Biomed Opt Express. 2021 Oct 12;12(11):6844-6863. doi: 10.1364/BOE.440444. eCollection 2021 Nov 1.
We present a completely label-free three-dimensional (3D) optical coherence tomography (OCT)-based tissue dynamics imaging method for visualization and quantification of the metabolic and necrotic activities of tumor spheroid. Our method is based on a custom 3D scanning protocol that is designed to capture volumetric tissue dynamics tomography images only in a few tens of seconds. The method was applied to the evaluation of a tumor spheroid. The time-course viability alteration and anti-cancer drug response of the spheroid were visualized qualitatively and analyzed quantitatively. The similarity between the OCT-based dynamics images and fluorescence microscope images was also demonstrated.
我们提出了一种完全无标记的基于三维(3D)光学相干断层扫描(OCT)的组织动力学成像方法,用于可视化和量化肿瘤球体的代谢和坏死活动。我们的方法基于一种定制的3D扫描协议,该协议旨在仅在几十秒内捕获体积组织动力学断层扫描图像。该方法应用于肿瘤球体的评估。定性地可视化了球体的时间进程活力变化和抗癌药物反应,并进行了定量分析。还证明了基于OCT的动力学图像与荧光显微镜图像之间的相似性。