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Fast imaging of millimeter-scale areas with beam deflection transmission electron microscopy

View ORCID ProfileZhihao Zheng, Christopher S. Own, View ORCID ProfileAdrian A. Wanner, View ORCID ProfileRandal A. Koene, View ORCID ProfileEric W. Hammerschmith, View ORCID ProfileWilliam M. Silversmith, View ORCID ProfileNico Kemnitz, View ORCID ProfileRan Lu, View ORCID ProfileDavid W. Tank, View ORCID ProfileH. Sebastian Seung
doi: https://doi.org/10.1101/2022.11.23.517701
Zhihao Zheng
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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Christopher S. Own
2Voxa, Seattle, WA, USA
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Adrian A. Wanner
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
3Paul Scherrer Institute, Villigen, Switzerland
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Randal A. Koene
2Voxa, Seattle, WA, USA
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Eric W. Hammerschmith
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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William M. Silversmith
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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Nico Kemnitz
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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Ran Lu
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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David W. Tank
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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H. Sebastian Seung
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, USA
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Abstract

Serial section transmission electron microscopy (TEM) has proven to be one of the leading methods for millimeter-scale 3D imaging of brain tissues at nanoscale resolution. It is important to further improve imaging efficiency to acquire larger and more brain volumes. We report here a three fold increase in the speed of TEM by using a beam deflecting mechanism to enable highly efficient acquisition of multiple image tiles (nine) for each motion of the mechanical stage. For millimeter-scale areas, the duty cycle of imaging doubles to more than 30%, yielding a net average imaging rate of 0.3 gigapixels per second. If fully utilized, an array of beam deflection TEMs should be capable of imaging a dataset of cubic millimeter scale in several weeks.

Competing Interest Statement

N.K. and H.S.S. disclose financial interests in Zetta AI LLC. C.S.O. and R.A.K. disclose financial interests in Voxa. A.A.W. is a founder and owner of ariadne.ai ag (Switzerland).

Footnotes

  • Revised manuscript with additional figures and text.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-ND 4.0 International license.
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Posted December 05, 2023.
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Fast imaging of millimeter-scale areas with beam deflection transmission electron microscopy
Zhihao Zheng, Christopher S. Own, Adrian A. Wanner, Randal A. Koene, Eric W. Hammerschmith, William M. Silversmith, Nico Kemnitz, Ran Lu, David W. Tank, H. Sebastian Seung
bioRxiv 2022.11.23.517701; doi: https://doi.org/10.1101/2022.11.23.517701
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Fast imaging of millimeter-scale areas with beam deflection transmission electron microscopy
Zhihao Zheng, Christopher S. Own, Adrian A. Wanner, Randal A. Koene, Eric W. Hammerschmith, William M. Silversmith, Nico Kemnitz, Ran Lu, David W. Tank, H. Sebastian Seung
bioRxiv 2022.11.23.517701; doi: https://doi.org/10.1101/2022.11.23.517701

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