Shao Meng, Wang Ke, Wang Zixin, Peng Tao, Zhang Shuhe, Zhang Juanlin, Fang Shu, Wang Fengsong, Zhang Shengzhao, Zhong Min-Cheng, Wang Yi, Zhong Zhensheng, Zhou Jinhua
School of Biomedical Engineering, Anhui Medical University, Hefei, Anhui, China.
School of Instrument Science and Opto-Electronic Engineering, Hefei University of Technology, Hefei, Anhui, China.
J Biophotonics. 2022 Dec;15(12):e202200122. doi: 10.1002/jbio.202200122. Epub 2022 Aug 27.
Oblique illumination imaging can significantly improve the contrast of transparent thin samples. However, in traditional oblique illumination methods, either the condenser is offset or a block is added to the condenser, which makes it complicated and challenged to build a stable oblique illumination imaging. Herein, we present a method to measure the optimal shading ratio of oblique illumination in an inverted microscope, and develop an apparatus for stable high-speed high-contrast imaging with uniform brightness. At optimal shading ratio, the oblique illumination imaging has better imaging quality than differential interference contrast, which characteristic is independent on sample. In oblique illumination with low magnification objective, the images have uneven brightness. According to target brightness, we have developed a brightness unevenness correction algorithm to form uniform background brightness for oblique illumination. Integrating the algorithm with imaging acquisition, corrected oblique illumination microscopy is appropriate to observe living cells with high contrast.
斜照成像可以显著提高透明薄样品的对比度。然而,在传统的斜照方法中,要么聚光镜偏移,要么在聚光镜上添加一个挡块,这使得构建稳定的斜照成像变得复杂且具有挑战性。在此,我们提出一种方法来测量倒置显微镜中斜照的最佳遮光比,并开发一种用于稳定高速高对比度成像且亮度均匀的装置。在最佳遮光比下,斜照成像具有比微分干涉对比度更好的成像质量,其特性与样品无关。在使用低倍物镜进行斜照时,图像亮度不均匀。根据目标亮度,我们开发了一种亮度不均匀校正算法,以形成斜照的均匀背景亮度。将该算法与成像采集相结合,校正后的斜照显微镜适用于以高对比度观察活细胞。