Influence of electron dose rate on electron counting images recorded with the K2 camera.
暂无分享,去创建一个
David A Agard | Xueming Li | Yifan Cheng | Shawn Q Zheng | D. Agard | Yifan Cheng | Xueming Li | Shawn Zheng | K. Egami | Kiyoshi Egami
[1] A. Cheng,et al. Movies of ice-embedded particles enhance resolution in electron cryo-microscopy. , 2012, Structure.
[2] R. Henderson,et al. Experimental observation of the improvement in MTF from backthinning a CMOS direct electron detector , 2009, Ultramicroscopy.
[3] W. Chiu,et al. Assessing the capabilities of a 4kx4k CCD camera for electron cryo-microscopy at 300kV. , 2006, Journal of structural biology.
[4] Wah Chiu,et al. 4.0-Å resolution cryo-EM structure of the mammalian chaperonin TRiC/CCT reveals its unique subunit arrangement , 2010, Proceedings of the National Academy of Sciences.
[5] Kai Zhang,et al. Atomic model of a cypovirus built from cryo-EM structure provides insight into the mechanism of mRNA capping , 2011, Proceedings of the National Academy of Sciences.
[6] J Pulokas,et al. Leginon: an automated system for acquisition of images from vitreous ice specimens. , 2000, Journal of structural biology.
[7] R Henderson,et al. Electronic detectors for electron microscopy. , 2007, Current opinion in structural biology.
[8] P. Mooney. Optimization of image collection for cellular electron microscopy. , 2007, Methods in cell biology.
[9] Christopher Irving,et al. Automation in single-particle electron microscopy connecting the pieces. , 2010, Methods in enzymology.
[10] Xueming Li,et al. GPU-enabled FREALIGN: accelerating single particle 3D reconstruction and refinement in Fourier space on graphics processors. , 2010, Journal of structural biology.
[11] Nikolaus Grigorieff,et al. Subunit interactions in bovine papillomavirus , 2010, Proceedings of the National Academy of Sciences.
[12] S. Harrison,et al. Near-atomic resolution using electron cryomicroscopy and single-particle reconstruction , 2008, Proceedings of the National Academy of Sciences.
[13] S. Harrison,et al. Molecular interactions in rotavirus assembly and uncoating seen by high-resolution cryo-EM , 2009, Proceedings of the National Academy of Sciences.
[14] W. Chiu,et al. Direct electron detection yields cryo-EM reconstructions at resolutions beyond 3/4 Nyquist frequency. , 2012, Journal of structural biology.
[15] D A Agard,et al. Automated data collection for electron microscopic tomography. , 2010, Methods in enzymology.
[16] Yifan Cheng,et al. Interactions of PAN's C‐termini with archaeal 20S proteasome and implications for the eukaryotic proteasome–ATPase interactions , 2010, The EMBO journal.
[17] John W Sedat,et al. UCSF tomography: an integrated software suite for real-time electron microscopic tomographic data collection, alignment, and reconstruction. , 2007, Journal of structural biology.
[18] R. Turchetta,et al. Enhanced imaging in low dose electron microscopy using electron counting , 2009, Ultramicroscopy.
[19] Anchi Cheng,et al. Initial evaluation of a direct detection device detector for single particle cryo-electron microscopy. , 2011, Journal of structural biology.
[20] R. Henderson,et al. Detective quantum efficiency of electron area detectors in electron microscopy , 2009, Ultramicroscopy.
[21] Yifan Cheng,et al. Mechanism of gate opening in the 20S proteasome by the proteasomal ATPases. , 2008, Molecular cell.
[22] Yifan Cheng,et al. Recording high-resolution images of two-dimensional crystals of membrane proteins. , 2013, Methods in molecular biology.
[23] M. Baker,et al. 4.4 Å cryo-EM structure of an enveloped alphavirus Venezuelan equine encephalitis virus , 2011, The EMBO journal.
[24] H. Stark,et al. Advantages of CCD detectors for de novo three-dimensional structure determination in single-particle electron microscopy. , 2005, Journal of structural biology.
[25] D. Agard,et al. Electron counting and beam-induced motion correction enable near atomic resolution single particle cryoEM , 2013, Nature Methods.
[26] Robert M Glaeser,et al. Precise beam-tilt alignment and collimation are required to minimize the phase error associated with coma in high-resolution cryo-EM. , 2011, Journal of structural biology.
[27] Michael J Rust,et al. Sub-diffraction-limit imaging by stochastic optical reconstruction microscopy (STORM) , 2006, Nature Methods.
[28] Michael W. Davidson,et al. Dual-color superresolution imaging of genetically expressed probes within individual adhesion complexes , 2007, Proceedings of the National Academy of Sciences.
[29] Xing Zhang,et al. 3.3 Å Cryo-EM Structure of a Nonenveloped Virus Reveals a Priming Mechanism for Cell Entry , 2010, Cell.
[30] R. Huber,et al. Crystal structure of the 20S proteasome from the archaeon T. acidophilum at 3.4 A resolution. , 1995, Science.