Three-dimensional distributions of elements in biological samples by energy-filtered electron tomography.
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R. Leapman | P. Laquerriere | G. Zhang | T. Talbot | É. Kocsis | Talbot Tl
[1] Wolfgang Baumeister,et al. Three-Dimensional Structure of Herpes Simplex Virus from Cryo-Electron Tomography , 2003, Science.
[2] E. O'Toole,et al. Cryoimmobilization and three‐dimensional visualization of C. elegans ultrastructure , 2003, Journal of microscopy.
[3] B. Inkson,et al. Spectroscopic electron tomography. , 2003, Ultramicroscopy.
[4] P. Midgley,et al. 3D electron microscopy in the physical sciences: the development of Z-contrast and EFTEM tomography. , 2003, Ultramicroscopy.
[5] R. Leapman,et al. Elemental Tomography of Biological Structures , 2003, Microscopy and Microanalysis.
[6] R. Leapman. Detecting single atoms of calcium and iron in biological structures by electron energy‐loss spectrum‐imaging , 2003, Journal of microscopy.
[7] W. Baumeister,et al. Macromolecular Architecture in Eukaryotic Cells Visualized by Cryoelectron Tomography , 2002, Science.
[8] J. Frank,et al. Electron tomographic analysis of frozen-hydrated tissue sections. , 2002, Journal of structural biology.
[9] Joachim Frank,et al. Three-dimensional imaging of biological complexity. , 2002, Journal of structural biology.
[10] Narayanan Eswar,et al. Structure of the 80S Ribosome from Saccharomyces cerevisiae—tRNA-Ribosome and Subunit-Subunit Interactions , 2001, Cell.
[11] S. Masich,et al. In situ transcription and splicing in the Balbiani ring 3 gene , 2001, The EMBO journal.
[12] D. Mastronarde,et al. Organellar relationships in the Golgi region of the pancreatic beta cell line, HIT-T15, visualized by high resolution electron tomography , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[13] W. Godwin. Article in Press , 2000 .
[14] G. Kothleitner,et al. Comparison of STEM EELS Spectrum Imaging vs EFTEM Spectrum Imaging , 1999, Microscopy and Microanalysis.
[15] R. Leapman,et al. Towards single atom analysis of biological structures. , 1999, Ultramicroscopy.
[16] D. Bazett-Jones,et al. Stoichiometric analysis of protein- and nucleic acid-based structures in the cell nucleus. , 1999, Micron.
[17] W. Baumeister,et al. Perspectives of molecular and cellular electron tomography. , 1997, Journal of structural biology.
[18] D. Mastronarde. Dual-axis tomography: an approach with alignment methods that preserve resolution. , 1997, Journal of structural biology.
[19] J Frank,et al. Low-dose automated electron tomography: a recent implementation. , 1997, Journal of structural biology.
[20] R. Leapman,et al. Spatial distributions of sulfur-rich proteins in cornifying epithelia. , 1997, Journal of structural biology.
[21] D Typke,et al. Energy filtered electron tomography of ice-embedded actin and vesicles. , 1997, Biophysical journal.
[22] J R Kremer,et al. Computer visualization of three-dimensional image data using IMOD. , 1996, Journal of structural biology.
[23] B F McEwen,et al. The relevance of dose-fractionation in tomography of radiation-sensitive specimens. , 1995, Ultramicroscopy.
[24] J. Frank,et al. Double-tilt electron tomography. , 1995, Ultramicroscopy.
[25] An imaging filter for biological applications. , 1995, Ultramicroscopy.
[26] M. Müller,et al. High‐pressure freezing of cell suspensions in cellulose capillary tubes , 1994, Journal of microscopy.
[27] D. Bazett-Jones,et al. Short-range DNA looping by the Xenopus HMG-box transcription factor, xUBF. , 1994, Science.
[28] P. Mooney,et al. Applications of slow-scan CCD cameras in transmission electron microscopy , 1993 .
[29] D A Agard,et al. Automated microscopy for electron tomography. , 1992, Ultramicroscopy.
[30] Z. Shao,et al. Optimization of quantitative electron energy loss spectroscopy in the low loss region: phosphorus L-edge. , 1992, Ultramicroscopy.
[31] Reiner Hegerl,et al. Towards automatic electron tomography , 1992 .
[32] J. Frank. Electron Tomography , 1992, Springer US.
[33] David B. Williams,et al. Electron energy-loss spectrum-imaging , 1991 .
[34] C Mory,et al. EELS elemental mapping with unconventional methods. II. Applications to biological specimens. , 1990, Ultramicroscopy.
[35] C. Colliex,et al. Elemental analysis near the single-atom detection level by processing sequences of energy-filtered images , 1989 .
[36] Christian Colliex,et al. Spectrum-image: The next step in EELS digital acquisition and processing , 1989 .
[37] R. Leapman,et al. Quantitative electron energy loss spectroscopy in biology. , 1988, Ultramicroscopy.
[38] R. Crowther,et al. A method for monitoring the collapse of plastic sections as a function of electron dose. , 1988, Ultramicroscopy.
[39] R. Leapman. Scanning Transmission Electron Microscope (STEM) Elemental Mapping by Electron Energy‐Loss Spectroscopy , 1986, Annals of the New York Academy of Sciences.
[40] F. Ottensmeyer. Electron spectroscopic imaging: parallel energy filtering and microanalysis in the fixed-beam electron microscope. , 1984, Journal of ultrastructure research.
[41] B. Bainbridge,et al. Genetics , 1981, Experientia.
[42] S. Brenner. The genetics of Caenorhabditis elegans. , 1974, Genetics.