Serabyn Eugene, Liewer Kurt, Lindensmith Chris, Wallace Kent, Nadeau Jay
Opt Express. 2016 Dec 12;24(25):28540-28548. doi: 10.1364/OE.24.028540.
In situ investigation of microbial life in extreme environments can be carried out with microscopes capable of imaging 3-dimensional volumes and tracking particle motion. Here we present a lensless digital holographic microscope approach that provides roughly 1.5 micron resolution in a compact, robust package suitable for remote deployment. High resolution is achieved by generating high numerical-aperture input beams with radial gradient-index rod lenses. The ability to detect and track prokaryotes was explored using bacterial strains of two different sizes. In the larger strain, a variety of motions were seen, while the smaller strain was used to demonstrate a detection capability down to micron scales.
利用能够对三维体积进行成像并跟踪粒子运动的显微镜,可以对极端环境中的微生物生命进行原位研究。在此,我们提出一种无透镜数字全息显微镜方法,该方法在紧凑、坚固的封装中提供约1.5微米的分辨率,适合远程部署。通过使用径向梯度折射率棒透镜产生高数值孔径输入光束来实现高分辨率。使用两种不同大小的细菌菌株探索了检测和跟踪原核生物的能力。在较大的菌株中,观察到了各种运动,而较小的菌株则用于证明低至微米尺度的检测能力。