论文标题
SOFFLFM:超分辨率光波动傅立叶光场显微镜
SOFFLFM: Super-resolution optical fluctuation Fourier light-field microscopy
论文作者
论文摘要
傅立叶光场显微镜(FLFM)使用微透镜阵列(MLA)将微观物镜的傅立叶平面分割,以产生多个二维透视图,从而使用3D DeconColution Clactulation Rickulution Raceulation Rackanning重建样品的三维(3D)结构。但是,FLFM的分辨率仍然受衍射的限制,此外,取决于孔径分裂。为了改善其分辨率,在这里提出了超分辨率光波动傅立叶光场显微镜(SOFFLFM),其中将具有超分辨率能力的SOFI方法引入了FLFM中。 SOFFLFM对FLFM收集的图像序列使用高阶累积统计分析,然后进行3D反卷积计算以重建样品的3D结构。解释了SOFFLFM在改善分辨率方面的理论基础,然后通过模拟进行验证。模拟结果表明,与FLFM相比,SOFFLFM在第二和第四阶的积累中提高了超过SQRT(2)和2次的横向和轴向分辨率。
Fourier light-field microscopy (FLFM) uses a micro-lens array (MLA) to segment the Fourier Plane of the microscopic objective lens to generate multiple two-dimensional perspective views, thereby reconstructing the three-dimensional(3D) structure of the sample using 3D deconvolution calculation without scanning. However, the resolution of FLFM is still limited by diffraction, and furthermore, dependent on the aperture division. In order to improve its resolution, a Super-resolution optical fluctuation Fourier light field microscopy (SOFFLFM) was proposed here, in which the Sofi method with ability of super-resolution was introduced into FLFM. SOFFLFM uses higher-order cumulants statistical analysis on an image sequence collected by FLFM, and then carries out 3D deconvolution calculation to reconstruct the 3D structure of the sample. Theoretical basis of SOFFLFM on improving resolution was explained and then verified with simulations. Simulation results demonstrated that SOFFLFM improved lateral and axial resolution by more than sqrt(2) and 2 times in the 2nd and 4th order accumulations, compared with that of FLFM.