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电子剂量率对 K2 相机记录的电子计数图像的影响。

Influence of electron dose rate on electron counting images recorded with the K2 camera.

机构信息

The Keck Advanced Microscopy Laboratory, Department of Biochemistry and Biophysics, University of California San Francisco, 600 16th Street, San Francisco, CA 94158, United States.

出版信息

J Struct Biol. 2013 Nov;184(2):251-60. doi: 10.1016/j.jsb.2013.08.005. Epub 2013 Aug 20.

Abstract

A recent technological breakthrough in electron cryomicroscopy (cryoEM) is the development of direct electron detection cameras for data acquisition. By bypassing the traditional phosphor scintillator and fiber optic coupling, these cameras have greatly enhanced sensitivity and detective quantum efficiency (DQE). Of the three currently available commercial cameras, the Gatan K2 Summit was designed specifically for counting individual electron events. Counting further enhances the DQE, allows for practical doubling of detector resolution and eliminates noise arising from the variable deposition of energy by each primary electron. While counting has many advantages, undercounting of electrons happens when more than one electron strikes the same area of the detector within the analog readout period (coincidence loss), which influences image quality. In this work, we characterized the K2 Summit in electron counting mode, and studied the relationship of dose rate and coincidence loss and its influence on the quality of counted images. We found that coincidence loss reduces low frequency amplitudes but has no significant influence on the signal-to-noise ratio of the recorded image. It also has little influence on high frequency signals. Images of frozen hydrated archaeal 20S proteasome (~700 kDa, D7 symmetry) recorded at the optimal dose rate retained both high-resolution signal and low-resolution contrast and enabled calculating a 3.6 Å three-dimensional reconstruction from only 10,000 particles.

摘要

最近电子低温显微镜(cryoEM)技术的突破是直接电子检测相机的数据采集。通过绕过传统的磷光体闪烁体和光纤耦合,这些相机大大提高了灵敏度和探测量子效率(DQE)。目前有三种可用的商业相机,Gatan K2 Summit 专门设计用于计数单个电子事件。计数进一步提高了 DQE,允许探测器分辨率实际翻倍,并消除了由于每个初级电子的能量沉积变化而产生的噪声。虽然计数有许多优点,但当多个电子在模拟读出期间撞击探测器的同一区域时(符合损失),会发生电子的欠计数,这会影响图像质量。在这项工作中,我们对 K2 Summit 进行了电子计数模式的特性描述,研究了剂量率和符合损失的关系及其对计数图像质量的影响。我们发现符合损失会降低低频幅度,但对记录图像的信噪比没有显著影响。它对高频信号的影响也很小。以最佳剂量率记录的冷冻水合古菌 20S 蛋白酶体(~700 kDa,D7 对称性)的图像保留了高分辨率信号和低分辨率对比度,并能够仅从 10,000 个粒子计算出 3.6 Å 的三维重建。

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