Fuh Yiin-Kuen, Lai Zheng-Hong, Kau Li-Han, Huang Hung-Jui
Institute of Opto-mechatronics Engineering, National Central University, Jhongli City, Taoyuan County, Taiwan.
Department of Mechanical Engineering, National Central University, Jhongli City, Taoyuan County, Taiwan.
PLoS One. 2017 Jun 26;12(6):e0179389. doi: 10.1371/journal.pone.0179389. eCollection 2017.
In this paper, we introduce a novel concept of liquid-actuated aspheric lens (LAL) with a built-in aspheric polydimethylsiloxane lens (APL) to enable the design of compact optical systems with varifocal microscopic imaging. The varifocal lens module consists of a sandwiched structures such as 3d printed syringe pump functionally serves as liquid controller. Other key components include two acrylic cylinders, a rigid separator, a APL/membrane composite (APLMC) embedded PDMS membrane. In functional operation, the fluidic controller was driven to control the pressure difference and ALPMC deformation. The focal length can be changed through the pressure difference. This is achieved by the adjustment of volume change of injected liquid such that a widely tunable focal length. The proposed LAL can transform to 3 modes: microscopic mode (APLMC only), convex-concave mode and biconcave mode. It is noticeable that LAL in the operation of microscopic mode is tunable in focus via the actuation of APLMC (focal length is from 4.3 to 2.3 mm and magnification 50X) and can rival the images quality of commercial microscopes. A new lab-on-phone device is economically feasible and functionally versatile to offer a great potential in the point of care applications.
在本文中,我们介绍了一种新型的液体驱动非球面透镜(LAL)概念,其内置非球面聚二甲基硅氧烷透镜(APL),以实现具有可变焦距显微成像的紧凑型光学系统的设计。可变焦距透镜模块由诸如3D打印注射器泵之类的夹心结构组成,其功能上用作液体控制器。其他关键组件包括两个丙烯酸圆柱体、一个刚性隔板、一个嵌入PDMS膜的APL/膜复合材料(APLMC)。在功能操作中,驱动流体控制器以控制压力差和APLMC变形。焦距可以通过压力差来改变。这是通过调节注入液体的体积变化来实现的,从而实现广泛可调的焦距。所提出的LAL可以转变为三种模式:显微模式(仅APLMC)、凹凸模式和双凹模式。值得注意的是,LAL在显微模式操作中可通过APLMC的驱动来调焦(焦距从4.3毫米到2.3毫米,放大倍数为50倍),并且可以与商业显微镜的图像质量相媲美。一种新型的手机实验室设备在经济上可行且功能多样,在即时护理应用中具有巨大潜力。