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Asynchronous data acquisition and on-the-fly analysis of dose fractionated cryoEM images by UCSFImage.


ABSTRACT: Newly developed direct electron detection cameras have a high image output frame rate that enables recording dose fractionated image stacks of frozen hydrated biological samples by electron cryomicroscopy (cryoEM). Such novel image acquisition schemes provide opportunities to analyze cryoEM data in ways that were previously impossible. The file size of a dose fractionated image stack is 20-60 times larger than that of a single image. Thus, efficient data acquisition and on-the-fly analysis of a large number of dose-fractionated image stacks become a serious challenge to any cryoEM data acquisition system. We have developed a computer-assisted system, named UCSFImage4, for semi-automated cryo-EM image acquisition that implements an asynchronous data acquisition scheme. This facilitates efficient acquisition, on-the-fly motion correction, and CTF analysis of dose fractionated image stacks with a total time of ?60s/exposure. Here we report the technical details and configuration of this system.

SUBMITTER: Li X 

PROVIDER: S-EPMC4633327 | biostudies-literature | 2015 Nov

REPOSITORIES: biostudies-literature

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Asynchronous data acquisition and on-the-fly analysis of dose fractionated cryoEM images by UCSFImage.

Li Xueming X   Zheng Shawn S   Agard David A DA   Cheng Yifan Y  

Journal of structural biology 20150911 2


Newly developed direct electron detection cameras have a high image output frame rate that enables recording dose fractionated image stacks of frozen hydrated biological samples by electron cryomicroscopy (cryoEM). Such novel image acquisition schemes provide opportunities to analyze cryoEM data in ways that were previously impossible. The file size of a dose fractionated image stack is 20-60 times larger than that of a single image. Thus, efficient data acquisition and on-the-fly analysis of a  ...[more]

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