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首页> 外文期刊>Journal of Structural Biology >UCSF tomography: An integrated software suite for real-time electron microscopic tomographic data collection, alignment, and reconstruction
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UCSF tomography: An integrated software suite for real-time electron microscopic tomographic data collection, alignment, and reconstruction

机译:UCSF层析成像:集成的软件套件,用于实时电子显微镜层析成像数据收集,对齐和重建

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摘要

A real-time alignment and reconstruction scheme for electron microscopic tomography (EMT) has been developed and integrated within our UCSF tomography data collection software. This newly integrated software suite provides full automation from data collection to real-time reconstruction by which the three-dimensional (3D) reconstructed volume is immediately made available at the end of each data collection. Real-time reconstruction is achieved by calculating a weighted back-projection on a small Linux cluster (five dual-processor compute nodes) concurrently with the UCSF tomography data collection running on the microscope's computer, and using the fiducial-marker free alignment data generated during the data collection process. The real-time reconstructed 3D volume provides users with immediate feedback to fully asses all aspects of the experiment ranging from sample choice, ice thickness, experimental parameters to the quality of specimen preparation. This information can be used to guide subsequent data collections. Access to the reconstruction is especially useful in low-dose cryo EMT where such information is very difficult to obtain due to extraordinary low signal to noise ratio in each 2D image. In our environment, we generally collect 2048 x 2048 pixel images which are subsequently computationally binned fourfold for the on-line reconstruction. Based upon experiments performed with thick and cryo specimens at various CCD magnifications (50000x-80000x), alignment accuracy is sufficient to support this reduced resolution but should be refined before calculating a full resolution reconstruction. The reduced resolution has proven to be quite adequate to assess sample quality, or to screen for the best data set for full-resolution reconstruction, significantly improving both productivity and efficiency of system resources. The total time from start of data collection to a final reconstructed volume (512 x 512 x 256 pixels) is about 50 min for a +/- 70 degrees 2k x 2k pixel tilt series acquired at every 1 degrees. (c) 2006 Elsevier Inc. All rights reserved.
机译:已经开发了一种用于电子显微镜断层摄影(EMT)的实时对准和重建方案,并将其集成到我们的UCSF断层摄影数据收集软件中。这个新集成的软件套件提供了从数据收集到实时重建的全自动化功能,通过该功能,可以在每次数据收集结束时立即获得三维(3D)重建体积。实时重建是通过在小型Linux集群(五个双处理器计算节点)上计算加权反投影,同时在显微镜计算机上运行UCSF层析成像数据收集,并使用在扫描过程中生成的基准标记自由对齐数据来实现的。数据收集过程。实时重建的3D体积可为用户提供即时反馈,以全面评估实验的各个方面,从样品选择,冰厚,实验参数到标本制备的质量。此信息可用于指导后续数据收集。在低剂量冷冻EMT中,由于每个2D图像中的信噪比极低,很难获得此类信息,因此在低剂量冷冻EMT中访问重建尤其有用。在我们的环境中,我们通常会收集2048 x 2048像素的图像,这些图像随后将在计算上进行四倍合并以进行在线重建。基于在各种CCD放大倍率(50000x-80000x)下对厚而冷的样本进行的实验,对准精度足以支持这种降低的分辨率,但是在计算全分辨率重建之前应进行精确调整。事实证明,降低的分辨率足以评估样品质量或筛选最佳数据集以进行全分辨率重建,从而显着提高了系统资源的生产率和效率。对于从每1度获取的+/- 70度2k x 2k像素倾斜序列,从数据收集开始到最终重建体积(512 x 512 x 256像素)的总时间约为50分钟。 (c)2006 Elsevier Inc.保留所有权利。

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