Jeong Hyeong-jun, Yoo Hongki, Gweon DaeGab
Opt Express. 2016 Feb 22;24(4):3806-16. doi: 10.1364/OE.24.003806.
We propose a new structure of confocal imaging system based on a direct-view confocal microscope (DVCM) with an electrically tunable lens (ETL). Since it has no mechanical moving parts to scan both the lateral (x-y) and axial (z) directions, the DVCM with an ETL allows for high-speed 3-dimensional (3-D) imaging. Axial response and signal intensity of the DVCM were analyzed theoretically according to the pinhole characteristics. The system was designed to have an isotropic spatial resolution of 20 µm in both lateral and axial direction with a large field of view (FOV) of 10 × 10 mm. The FOV was maintained according to the various focal shifts as a result of an integrated design of an objective lens with the ETL. The developed system was calibrated to have linear focal shift over a range of 9 mm with an applied current to the ETL. The system performance of 3-D volume imaging was demonstrated using standard height specimens and a dental plaster.
我们提出了一种基于带有电可调透镜(ETL)的直视共聚焦显微镜(DVCM)的新型共聚焦成像系统结构。由于它没有用于在横向(x - y)和轴向(z)方向进行扫描的机械运动部件,带有ETL的DVCM可实现高速三维(3 - D)成像。根据针孔特性对DVCM的轴向响应和信号强度进行了理论分析。该系统设计为在横向和轴向方向上具有20 µm的各向同性空间分辨率,大视场(FOV)为10×10 mm。由于物镜与ETL的集成设计,视场在各种焦移情况下得以保持。所开发的系统经过校准,在向ETL施加电流时,在9 mm的范围内具有线性焦移。使用标准高度标本和牙科石膏展示了该系统的三维体积成像性能。