Germann James A, Davis Lloyd M
Opt Express. 2014 Mar 10;22(5):5641-50. doi: 10.1364/OE.22.005641.
We report high sensitivity detection and tracking of a single fluorescent nanoparticle in solution by use of four alternately pulsed laser diodes for fluorescence excitation in a confocal microscope. Slight offsets between the centers of the overlapping laser foci together with time-resolved photon counting enable sub-micron precision position measurements. Real-time correction for diffusional motion with a xyz-piezo stage then enables tracking of a nanoparticle with diffusivity up to ~12 μm(2) s(-1). Fluorescence correlation spectroscopy and calibration measurements indicate a net fluorescence photon detection efficiency of ~6-9%, comparable to that of an optimized single-molecule microscope.
我们报告了通过使用四个交替脉冲激光二极管在共聚焦显微镜中进行荧光激发,从而对溶液中的单个荧光纳米颗粒进行高灵敏度检测和跟踪。重叠激光焦点中心之间的微小偏移与时间分辨光子计数相结合,实现了亚微米精度的位置测量。然后,利用xyz压电平台对扩散运动进行实时校正,能够跟踪扩散系数高达约12μm² s⁻¹的纳米颗粒。荧光相关光谱和校准测量表明,净荧光光子检测效率约为6 - 9%,与优化后的单分子显微镜相当。