Ritsumeikan University, College of Science and Engineering, Department of Electrical and Electronic, Japan.
National Institute of Advanced Industrial Science and Technology, Electronics and Photonics Research, Japan.
J Biomed Opt. 2018 Sep;24(3):1-6. doi: 10.1117/1.JBO.24.3.031007.
Mobile phone technology has led to implementation of portable and inexpensive microscopes. Light-emitting diode (LED) array microscopes support various multicontrast imaging by flexible illumination patterns of the LED array that can be achieved without changing the optical components of the microscope. Here, we demonstrate a mobile-phone-based LED array microscope to realize multimodal imaging with bright-field, dark-field, differential phase-contrast, and Rheinberg illuminations using as few as 37 LED bulbs. Using this microscope, we obtained high-contrast images of living cells. Furthermore, by changing the color combinations of Rheinberg illumination, we were able to obtain images of living chromatic structures with enhanced or diminished contrast. This technique is expected to be a foundation for high-contrast microscopy used in modern field studies.
移动电话技术的发展促使便携式、低成本显微镜得以实现。发光二极管(LED)阵列显微镜通过 LED 阵列的灵活照明模式支持各种多对比度成像,而无需更换显微镜的光学元件。在这里,我们展示了一种基于手机的 LED 阵列显微镜,该显微镜仅使用 37 个 LED 灯泡即可实现明场、暗场、微分相差和 Rheinberg 照明的多模式成像。使用该显微镜,我们获得了活细胞的高对比度图像。此外,通过改变 Rheinberg 照明的颜色组合,我们能够获得具有增强或减弱对比度的活色结构图像。这项技术有望成为现代野外研究中高对比度显微镜的基础。