Randall Centre for Cell and Molecular Biophysics, King's College London, London, UK.
Nat Methods. 2018 Sep;15(9):689-692. doi: 10.1038/s41592-018-0072-5. Epub 2018 Jul 30.
High-density analysis methods for localization microscopy increase acquisition speed but produce artifacts. We demonstrate that these artifacts can be eliminated by the combination of Haar wavelet kernel (HAWK) analysis with standard single-frame fitting. We tested the performance of this method on synthetic, fixed-cell, and live-cell data, and found that HAWK preprocessing yielded reconstructions that reflected the structure of the sample, thus enabling high-speed, artifact-free super-resolution imaging of live cells.
高密度定位显微镜分析方法提高了采集速度,但会产生伪影。我们证明,通过 Haar 小波核 (HAWK) 分析与标准单帧拟合相结合,可以消除这些伪影。我们在合成、固定细胞和活细胞数据上测试了这种方法的性能,发现 HAWK 预处理得到的重建结果反映了样品的结构,从而实现了活细胞的高速、无伪影超分辨率成像。