Ströhl Florian, Kaminski Clemens F
Advanced Optical Technologies (AOT), University of Erlangen-Nuremberg, Paul Gordan Straße 6, 91052 Erlangen, Germany. Department of Chemical Engineering and Biotechnology, University of Cambridge, Pembroke Street, Cambridge, CB2 3RA, UK.
Methods Appl Fluoresc. 2015 Jan 16;3(1):014002. doi: 10.1088/2050-6120/3/1/014002.
We demonstrate the reconstruction of images obtained by multifocal structured illumination microscopy, MSIM, using a joint Richardson-Lucy, jRL-MSIM, deconvolution algorithm, which is based on an underlying widefield image-formation model. The method is efficient in the suppression of out-of-focus light and greatly improves image contrast and resolution. Furthermore, it is particularly well suited for the processing of noise corrupted data. The principle is verified on simulated as well as experimental data and a comparison of the jRL-MSIM approach with the standard reconstruction procedure, which is based on image scanning microscopy, ISM, is made. Our algorithm is efficient and freely available in a user friendly software package.
我们展示了使用联合理查森-露西(jRL-MSIM)反卷积算法对多焦点结构照明显微镜(MSIM)获得的图像进行重建,该算法基于基础宽场图像形成模型。该方法在抑制离焦光方面效率很高,并大大提高了图像对比度和分辨率。此外,它特别适用于处理受噪声干扰的数据。该原理在模拟数据和实验数据上均得到验证,并将jRL-MSIM方法与基于图像扫描显微镜(ISM)的标准重建程序进行了比较。我们的算法效率高,并且在一个用户友好的软件包中免费提供。