Hassler Kai, Leutenegger Marcel, Rigler Per, Rao Ramachandra, Rigler Rudolf, Gösch Michael, Lasser Theo
Opt Express. 2005 Sep 19;13(19):7415-23. doi: 10.1364/opex.13.007415.
We designed a fluorescence correlation spectroscopy (FCS) system for measurements on surfaces. The system consists of an objective-type total internal reflection fluorescence (TIRF) microscopy setup, adapted to measure FCS. Here, the fluorescence exciting evanescent wave is generated by epi-illumination through the periphery of a high NA oil-immersion objective. The main advantages with respect to conventional FCS systems are an improvement in terms of counts per molecule (cpm) and a high signal to background ratio. This is demonstrated by investigating diffusion as well as binding and release of single molecules on a glass surface. Furthermore, the size and shape of the molecule detection efficiency (MDE) function was calculated, using a wave-vectorial approach and taking into account the influence of the dielectric interface on the emission properties of fluorophores.
我们设计了一种用于表面测量的荧光相关光谱(FCS)系统。该系统由一个物镜型全内反射荧光(TIRF)显微镜装置组成,适用于测量FCS。在这里,荧光激发倏逝波是通过高数值孔径油浸物镜周边的落射照明产生的。相对于传统FCS系统的主要优点是分子计数(cpm)方面的改进以及高信噪比。通过研究玻璃表面上单个分子的扩散以及结合和释放来证明这一点。此外,使用波矢方法并考虑介电界面对荧光团发射特性的影响,计算了分子检测效率(MDE)函数的大小和形状。