Analyzing the Effect of the Intra-Pixel Position of Small PSFs for Optimizing the PL of Optical Subpixel Localization
Engineering - 2023
Tài liệu tham khảo
Yildiz, 2003, Myosin V walks hand-over-hand: single fluorophore imaging with 1.5-nm localization, Science, 300, 2061, 10.1126/science.1084398
Matsuda, 2008, Direct measurement of protein dynamics inside cells using a rationally designed photoconvertible protein, Nat Methods, 5, 339, 10.1038/nmeth.1193
Copeland, 2018, Subnanometer localization accuracy in widefield optical microscopy, Light Sci Appl, 7, 31, 10.1038/s41377-018-0031-z
Wang, 2022, Fluorescence nanoscopy in neuroscience, Engineering, 16, 29, 10.1016/j.eng.2020.11.010
Mathai, 2016, Optical tracking of nanoscale particles in microscale environments, Appl Phys Rev, 3, 10.1063/1.4941675
Wei, 2018, A real-time detection and positioning method for small and weak targets using a 1D morphology-based approach in 2D images, Light Sci Appl, 7, 18006, 10.1038/lsa.2018.6
Kong, 2021, A light field measurement system through PSF estimation by a morphology-based method, Int J Extrem Manuf, 3, 10.1088/2631-7990/ac1455
Chen, 2021, Sub-10 nm fabrication: methods and applications, Int J Extrem Manuf, 3, 10.1088/2631-7990/ac087c
Wang, 2018, Real-time robust individual X point localization for stereoscopic tracking, Pattern Recogn Lett, 112, 138, 10.1016/j.patrec.2018.07.002
Silva, 2006, Estimation of a super-resolved PSF for the data reduction of undersampled stellar observations—deriving an accurate model for fitting photometry with Corot space telescope, Astron Astrophys, 452, 363, 10.1051/0004-6361:20054614
Liebe, 2002, Accuracy performance of star trackers—a tutorial, IEEE Trans Aerosp Electron Syst, 38, 587, 10.1109/TAES.2002.1008988
Genzel, 2010, The galactic center massive black hole and nuclear star cluster, Rev Mod Phys, 82, 3121, 10.1103/RevModPhys.82.3121
Do, 2016, Observational constraints on the formation and evolution of the Milky Way nuclear star cluster with Kect and Gemini, Proc Int Astron Union, 11, 222, 10.1017/S1743921316012230
Du, 2016, A high-accuracy extraction algorithm of planet centroid image in deep-space autonomous optical navigation, J Navigation, 69, 828, 10.1017/S0373463315000910
Zhang, 2018, Novel approach to improve the attitude update rate of a star tracker, Opt Express, 26, 5164, 10.1364/OE.26.005164
Jiang, 2018, High-accuracy synchronous extraction algorithm of star and celestial body features for optical navigation sensor, IEEE Sens J, 18, 713, 10.1109/JSEN.2017.2777493
Betzig, 2006, Imaging intracellular fluorescent proteins at nanometer resolution, Science, 313, 1642, 10.1126/science.1127344
Bates, 2007, Multicolor super-resolution imaging with photo-switchable fluorescent probes, Science, 317, 1749, 10.1126/science.1146598
Manley, 2008, High-density mapping of single-molecule trajectories with photoactivated localization microscopy, Nat Methods, 5, 155, 10.1038/nmeth.1176
Small, 2014, Superresolution localization methods, Annu Rev Phys Chem, 65, 107, 10.1146/annurev-physchem-040513-103735
Lelek, 2021, Single-molecule localization microscopy, Nat Rev Methods Primers, 1, 40, 10.1038/s43586-021-00038-x
Burov, 2016, Single-pixel interior filling function approach for detecting and correcting errors in particle tracking, Proc Natl Acad Sci USA, 114, 221, 10.1073/pnas.1619104114
Winick, 1986, Cramér–Rao lower bounds on the performance of charge-coupled-device optical position estimators, J Opt Soc Am A Opt Image Sci Vis, 3, 1809, 10.1364/JOSAA.3.001809
Chen, 2009, Accuracy analysis on centroid estimation algorithm limited by photon noise for point object, Opt Commun, 282, 1526, 10.1016/j.optcom.2008.12.046
Jia, 2010, Minimum variance unbiased subpixel centroid estimation of point image limited by photon shot noise, J Opt Soc Am A Opt Image Sci Vis, 27, 2038, 10.1364/JOSAA.27.002038
Davidson, 2019, Early PSF/LSF model. Gaia data release 2 documentation, Madrid: European Space Agency
Mortensen, 2010, Optimized localization analysis for single-molecule tracking and super-resolution microscopy, Nat Methods, 7, 377, 10.1038/nmeth.1447
Smith, 2010, Fast, single-molecule localization that achieves theoretically minimum uncertainty, Nat Methods, 7, 373, 10.1038/nmeth.1449
Huang, 2013, Video-rate nanoscopy using sCMOS camera-specific single-molecule localization algorithms, Nat Methods, 10, 653, 10.1038/nmeth.2488
Abdo, 2009, Fermi/large area telescope bright gamma-ray source list, Astrophys J Suppl S, 183, 44, 10.1088/0067-0049/183/1/46
Fabricius, 2019
Stone, 1989, A comparison of digital centering algorithms, Astron J, 97, 1227, 10.1086/115066
Wei, 2014, S-curve centroiding error correction for star sensor, Acta Astronaut, 99, 231, 10.1016/j.actaastro.2014.03.002
Rufino, 2003, Enhancement of the centroiding algorithm for the star tracker measure refinement, Acta Astronaut, 53, 135, 10.1016/S0094-5765(02)00199-6
Jia, 2010, Systematic error analysis and compensation for high accuracy star centroid estimation of star tracker, Sci China Technol Sci, 53, 3145, 10.1007/s11431-010-4129-7
Ares, 2004, Influence of thresholding on centroid statistics: full analytical description, Appl Opt, 43, 5796, 10.1364/AO.43.005796
Ma, 2009, Error analysis of CCD-based point source centroid computation under the background light, Opt Express, 17, 8525, 10.1364/OE.17.008525
Zhang, 2019, Accurate and robust synchronous extraction algorithm for star centroid and nearby celestial body edge, IEEE Access, 7, 126742, 10.1109/ACCESS.2019.2939148
Delabie, 2014, An accurate and efficient Gaussian fit centroiding algorithm for star trackers, J Astronaut Sci, 61, 60, 10.1007/s40295-015-0034-4
Wang, 2015, Gaussian analytic centroiding method of star image of star tracker, Adv Space Res, 56, 2196, 10.1016/j.asr.2015.08.027
Anderson, 2000, Toward high-precision astrometry with WFPC2. I. Deriving an accurate point-spread function, Publ Astron Soc Pac, 112, 1360, 10.1086/316632
Zhai, 2011, Micro-pixel accuracy centroid displacement estimation and detector calibration, Proc R Soc A, 467, 3550, 10.1098/rspa.2011.0255
European Machine Vision Association. EMVA standard 1288: standard for characterization of image sensors and cameras, release 3.1. Report. Barcelona: European Machine Vision Association (EMVA); 2016.
Sun, 2016, An accuracy measurement method for star trackers based on direct astronomic observation, Sci Rep, 6, 22593, 10.1038/srep22593
Freeman PL. Image shifting apparatus for enhanced image resolution. United States patent US7420592 B2. 2008.