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PMID: 21740865 Published · ppublish English Journal Article

A fast algorithm for computing and correcting the CTF for tilted, thick specimens in TEM.

Ultramicroscopy ·Vol. 111 ·No. 8 ·2011-07-00 ·Pages 1029-36

Voortman LM, Stallinga S, Schoenmakers RH, van Vliet LJ, Rieger B

Abstract

Today, the resolution in phase-contrast cryo-electron tomography is for a significant part limited by the contrast transfer function (CTF) of the microscope. The CTF is a function of defocus and thus varies spatially as a result of the tilting of the specimen and the finite specimen thickness. Models that include spatial dependencies have not been adopted in daily practice because of their high computational complexity. Here we present an algorithm which reduces the processing time for computing the 'tilted' CTF by more than a factor 100. Our implementation of the full 3D CTF has a processing time on the order of a Radon transform of a full tilt-series. We derive and validate an expression for the damping envelope function describing the loss of resolution due to specimen thickness. Using simulations we quantify the effects of specimen thickness on the accuracy of various forward models. We study the influence of spatially varying CTF correction and subsequent tomographic reconstruction by simulation and present a new approach for space-variant phase-flipping. We show that our CTF correction strategies are successful in increasing the resolution after tomographic reconstruction.

Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Voortman Lenard M
Quantitative Imaging Group, Faculty of Applied Sciences, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands. l.m.voortman@tudelft.nl
Stallinga Sjoerd
Schoenmakers Remco H M
van Vliet Lucas J
Rieger Bernd
Article Info
Journal
Ultramicroscopy
Abbr.
Ultramicroscopy
ISSN
1879-2723
Published
2011-07-00
Epub
2011-00-15
Pages
1029-36
Language
English
Region
Netherlands
NLM ID
7513702
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