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首页> 外文期刊>Journal of Fluorescence >The limitations of nonlinear fluorescence effect in super resolution saturated structured illumination microscopy system
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The limitations of nonlinear fluorescence effect in super resolution saturated structured illumination microscopy system

机译:超分辨率饱和结构照明显微镜系统中非线性荧光效应的局限性

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Classically, optical systems are considered to have a fundamental resolution limit due to diffraction. Many strategies for improving both axial and lateral resolutions are based on a priori information about the input signal. These strategies lead to a numerical aperture improvement. However these are still limited by the wave nature of light. By using fluorescence technique one theoretically can reach unlimited resolution. The key point is to use the nonlinear dependence of the fluorescence emission rate on the intensity of the applied illumination. In this paper we present simulation as well as experimental results which show the advantage and the problems of using the nonlinear fluorescence effect in super resolution systems as well as discussing the nonlinear phenomena concerning the fluorescence process. The results show that the nonlinear fluorescence effect is accompanied by severe quenching, bleaching and saturation phenomena. As consequence, super resolution using saturated structured illumination method in living biological samples becomes severely restricted.
机译:传统上,由于衍射,光学系统被认为具有基本的分辨率极限。用于提高轴向和横向分辨率的许多策略都是基于有关输入信号的先验信息。这些策略导致数值孔径的改善。然而,这些仍然受到光的波动性质的限制。通过使用荧光技术,理论上可以达到无限的分辨率。关键是要利用荧光发射速率对所施加照明强度的非线性依赖性。在本文中,我们给出了仿真和实验结果,这些结果表明了在超分辨率系统中使用非线性荧光效应的优点和问题,并讨论了与荧光过程有关的非线性现象。结果表明,非线性荧光效应伴随着严重的淬灭,漂白和饱和现象。结果,在生物样品中使用饱和结构照明方法的超分辨率受到严格限制。

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