Liu Jian, Li Qiang, Li Mengzhou, Gao Shan, Liu Chenguang, Zou Limin, Tan Jiubin
Opt Lett. 2017 Jul 1;42(13):2587-2590. doi: 10.1364/OL.42.002587.
We propose an elliptical mirror-based total-internal-reflection fluorescence (e-TIRF) microscopy with shadowless illumination and adjustable penetration depth. The elliptical mirror is used to produce a hollow-cone illumination with all azimuthal directions and a large range of incident angle, so as to attenuate the potential shadow effects when utilizing a single-direction illumination, such as asymmetries and low contrast. The experiment demonstrates that the e-TIRF method can realize shadowless imaging with symmetric intensity distribution. Meanwhile, the penetration depth of e-TIRF can be theoretically adjusted from 58 nm to 250 nm by adjusting the size of the aperture or the position of an opaque mask. This method extends the minimum penetration depth, which is useful for high axial resolution.
我们提出了一种基于椭圆镜的全内反射荧光(e-TIRF)显微镜,具有无影照明和可调节的穿透深度。椭圆镜用于产生具有所有方位角方向和大范围入射角的空心锥照明,以减弱在使用单向照明时可能出现的阴影效应,如不对称性和低对比度。实验表明,e-TIRF方法可以实现强度分布对称的无影成像。同时,通过调整孔径大小或不透明掩膜的位置,理论上可以将e-TIRF的穿透深度从58纳米调整到250纳米。这种方法扩展了最小穿透深度,这对于高轴向分辨率是有用的。