Jiang Zhao, Wang Di, Zheng Yi, Liu Chao, Wang Qiong-Hua
Opt Express. 2021 Jun 21;29(13):20322-20335. doi: 10.1364/OE.432290.
In this paper, a continuous optical zoom microscopy imaging system based on liquid lenses is proposed. Compared with traditional microscopes, which have discrete magnification, requiring manual conversion of the objective lens to change the magnification, the proposed microscope can continuously change the magnification of the targets in real-time. An adaptive zoom microscope, a liquid lens driving board, a microscope bracket, an adjustable three-dimensional stage and a light source are stacked to form the main framework of the continuous optical zoom microscopy imaging system. The adaptive zoom microscope which is composed of four electrowetting liquid lenses and six glass lenses form the main imaging element of the microscope. By changing the driving voltage which is applied to the four liquid lenses, the focal length of the liquid lenses can be modulated to achieve continuous zooming. By contrast, in traditional microscopes, the zooming process can only be achieved by rotating the eyepieces at different magnifications. At a fixed working distance, the magnification of the proposed microscope can change continuously from ∼9.6× to ∼22.2× with a response time of ∼50ms. Moreover, an axial depth scanning of ∼1000µm can be achieved without any mechanical movement. Our experiments proved that the microscope has stable performance and high consistency during zooming. Therefore, the proposed microscope has obvious advantages over the traditional microscopes in observing dynamic samples with different magnifications and can be commercialized for further expanding the applications in biochemical and pathological analysis.
本文提出了一种基于液体透镜的连续光学变焦显微镜成像系统。与传统显微镜相比,传统显微镜具有离散放大倍率,需要手动更换物镜来改变放大倍率,而本文提出的显微镜能够实时连续改变目标的放大倍率。自适应变焦显微镜、液体透镜驱动板、显微镜支架、可调三维载物台和光源堆叠在一起,构成了连续光学变焦显微镜成像系统的主要框架。由四个电润湿液体透镜和六个玻璃透镜组成的自适应变焦显微镜构成了显微镜的主要成像元件。通过改变施加在四个液体透镜上的驱动电压,可以调节液体透镜的焦距以实现连续变焦。相比之下,在传统显微镜中,变焦过程只能通过旋转不同放大倍率的目镜来实现。在固定工作距离下,本文提出的显微镜的放大倍率可以在约9.6倍至约22.2倍之间连续变化,响应时间约为50毫秒。此外,无需任何机械移动即可实现约1000微米的轴向深度扫描。我们的实验证明,该显微镜在变焦过程中具有稳定的性能和高度的一致性。因此,本文提出的显微镜在观察不同放大倍率的动态样本方面比传统显微镜具有明显优势,并且可以商业化以进一步扩大其在生化和病理分析中的应用。