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GENFIRE: from Precisely Localizing Single Atoms in Materials to High Resolution 3D Imaging of Cellular Structures

Published online by Cambridge University Press:  01 August 2018

Jianwei Miao
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA.
Alan Pryor Jr.
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA.
Yongsoo Yang
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA.
Arjun Rana
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA.
Marcus Gallagher-Jones
Affiliation:
Department of Chemistry & Biochemistry, UCLA-DOE Institute of Genomics and Proteomics, Los Angeles, California 90095-1570, USA.
Jihan Zhou
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA.
Yuan Hung Lo
Affiliation:
Department of Physics and Astronomy and California NanoSystems Institute, University of California Los Angeles, California 90095, USA. Department of Bioengineering, University of California, Los Angeles, CA 90095, USA.
Jose A. Rodriguez
Affiliation:
Department of Chemistry & Biochemistry, UCLA-DOE Institute of Genomics and Proteomics, Los Angeles, California 90095-1570, USA.
Wah Chiu
Affiliation:
SLAC National Accelerator Laboratory and Departments of Bioengineering, Microbiology and Immunology, Stanford University, Stanford, California, 94304, USA.
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© Microscopy Society of America 2018 

References

1. Pryor, A. Jr., et al GENFIRE: A generalized Fourier iterative reconstruction algorithm for high-resolution 3D imaging. Sci. Rep. 7, 10409 2017.CrossRefGoogle ScholarPubMed
2. Miao, J., Foster, F. Levi, O. Equally sloped tomography with oversampling reconstruction. Phys. Rev. B 72, 052103 2005.CrossRefGoogle Scholar
3. Lee, E., et al Radiation Dose Reduction and Image Enhancement in Biological Imaging through Equally Sloped Tomography. J. Struct. Biol. 164, 221227, 2008.CrossRefGoogle ScholarPubMed
4. Scott, M. C., et al Electron tomography at 2.4-angstrom resolution. Nature 483, 444447, 2012.CrossRefGoogle ScholarPubMed
5. Miao, J., Ercius, P. Billinge, S. J. L. Atomic electron tomography: 3D structures without crystals. Science 353, aaf2157 2016.CrossRefGoogle ScholarPubMed
6. Xu, R., et al Three-Dimensional Coordinates of Individual Atoms in Materials Revealed by Electron Tomography. Nature Mater. 14, 10991103, 2015.CrossRefGoogle ScholarPubMed
7. Yang, Y., et al Deciphering chemical order/disorder and material properties at the single-atom level. Nature 542, 7579, 2017.CrossRefGoogle ScholarPubMed
8. This work was supported by STROBE: A National Science Foundation Science & Technology Center under Grant No. DMR 1548924, and the Office of Basic Energy Sciences of the U.S. Department of Energy (Grant No. DE-SC0010378).Google Scholar
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GENFIRE: from Precisely Localizing Single Atoms in Materials to High Resolution 3D Imaging of Cellular Structures
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