Park Kwan Seob, Kim Dong Uk, Lee Jooran, Kim Geon Hee, Chang Ki Soo
Division of Scientific Instrumentation, Korea Basic Science Institute, 169-148 Gwahak-ro Yuseong-gu, Daejeon 34133, South Korea.
Biomed Opt Express. 2016 May 19;7(6):2285-94. doi: 10.1364/BOE.7.002285. eCollection 2016 Jun 1.
We demonstrate simultaneous imaging of multiple fluorophores using wide-field epi-fluorescence microscopy with a monochrome camera. The intensities of the three lasers are modulated by a sinusoidal waveform in order to excite each fluorophore with the same modulation frequency and a different time-delay. Then, the modulated fluorescence emissions are simultaneously detected by a camera operating at four times the excitation frequency. We show that two different fluorescence beads having crosstalk can be clearly separated using digital processing based on the phase information. In addition, multiple organelles within multi-stained single cells are shown with the phase mapping method, demonstrating an improved dynamic range and contrast compared to the conventional fluorescence image. These findings suggest that wide-field epi-fluorescence microscopy with four-bucket detection could be utilized for high-contrast multicolor imaging applications such as drug delivery and fluorescence in situ hybridization.
我们展示了使用配备单色相机的宽场落射荧光显微镜对多个荧光团进行同步成像。三个激光器的强度由正弦波形调制,以便以相同的调制频率和不同的时间延迟激发每个荧光团。然后,由以激发频率四倍运行的相机同时检测调制后的荧光发射。我们表明,基于相位信息的数字处理可以清晰地分离具有串扰的两种不同荧光珠。此外,通过相位映射方法展示了多染色单细胞内的多个细胞器,与传统荧光图像相比,其动态范围和对比度得到了改善。这些发现表明,具有四桶检测功能的宽场落射荧光显微镜可用于药物递送和荧光原位杂交等高对比度多色成像应用。