Pavani Sri Rama Prasanna, DeLuca Jennifer G, Piestun Rafael
Department of Electrical and Computer Engineering, University of Colorado, Boulder, CO 80309, USA.
Opt Express. 2009 Oct 26;17(22):19644-55. doi: 10.1364/OE.17.019644.
Double-helix point spread function photoactivation-localization microscopy allows three-dimensional (3D) superresolution imaging of objects smaller than the optical diffraction-limit. We demonstrate polarization sensitive detection with 3D super-localization of single-molecules and unveil 3D polarization specific characteristics of single-molecules within the intracellular structure of PtK1 cells expressing photoactivatable green fluorescent protein. The system modulates orthogonal polarization components of single-molecule emissions with a single spatial light modulator and detects them separately with a single detector. Information obtained from the two polarization channels demonstrates polarization based contrast in 3D superresolution imaging. Further, we show that the 3D information from the two channels can be optimally combined to yield up to 30% improvement in localization precision relative to a single polarization channel system.
双螺旋点扩散函数光激活定位显微镜可对小于光学衍射极限的物体进行三维(3D)超分辨率成像。我们展示了单分子的三维超定位的偏振敏感检测,并揭示了在表达光激活绿色荧光蛋白的PtK1细胞的细胞内结构中单分子的三维偏振特异性特征。该系统用单个空间光调制器调制单分子发射的正交偏振分量,并用单个探测器分别检测它们。从两个偏振通道获得的信息证明了三维超分辨率成像中基于偏振的对比度。此外,我们表明,相对于单偏振通道系统,来自两个通道的三维信息可以进行最佳组合,从而使定位精度提高多达30%。