Chen Jianling, Xu Yan, Lv Xiaohua, Lai Xiaomin, Zeng Shaoqun
Britton Chance Center for Biomedical Photonics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.
Opt Express. 2013 Jan 14;21(1):112-21. doi: 10.1364/OE.21.000112.
We propose a structured illumination differential interference contrast (SI-DIC) microscopy, breaking the diffraction resolution limit of differential interference contrast (DIC) microscopy. SI-DIC extends the bandwidth of coherent transfer function of the DIC imaging system, thus the resolution is improved. With 0.8 numerical aperture condenser and objective, the reconstructed SI-DIC image of 53 nm polystyrene beads reveals lateral resolution of approximately 190 nm, doubling that of the conventional DIC image. We also demonstrate biological observations of label-free cells with improved spatial resolution. The SI-DIC microscopy can provide sub-diffraction resolution and high contrast images with marker-free specimens, and has the potential for achieving sub-diffraction resolution quantitative phase imaging.
我们提出了一种结构光照微分干涉对比(SI-DIC)显微镜,突破了微分干涉对比(DIC)显微镜的衍射分辨率极限。SI-DIC扩展了DIC成像系统相干传递函数的带宽,从而提高了分辨率。使用数值孔径为0.8的聚光镜和物镜,53纳米聚苯乙烯微球的重建SI-DIC图像显示横向分辨率约为190纳米,是传统DIC图像的两倍。我们还展示了对无标记细胞进行具有更高空间分辨率的生物学观察。SI-DIC显微镜可以为无标记样本提供亚衍射分辨率和高对比度图像,并且具有实现亚衍射分辨率定量相成像的潜力。