Maxime Comet, Patricia M Dijkman, Reint Boer Iwema, Tilman Franke, Simonas Masiulis, Ruud Schampers, Oliver Raschdorf, Fanis Grollios, Edward E Pryor, Ieva Drulyte
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引用次数: 0
Abstract
Data acquisition and processing for cryo-electron tomography can be a significant bottleneck for users. To simplify and streamline the cryo-ET workflow, Tomo Live, an on-the-fly solution that automates the alignment and reconstruction of tilt-series data, enabling real-time data-quality assessment, has been developed. Through the integration of Tomo Live into the data-acquisition workflow for cryo-ET, motion correction is performed directly after each of the acquired tilt angles. Immediately after the tilt-series acquisition has completed, an unattended tilt-series alignment and reconstruction into a 3D volume is performed. The results are displayed in real time in a dedicated remote web platform that runs on the microscope hardware. Through this web platform, users can review the acquired data (aligned stack and 3D volume) and several quality metrics that are obtained during the alignment and reconstruction process. These quality metrics can be used for fast feedback for subsequent acquisitions to save time. Parameters such as Alignment Accuracy, Deleted Tilts and Tilt Axis Correction Angle are visualized as graphs and can be used as filters to export only the best tomograms (raw data, reconstruction and intermediate data) for further processing. Here, the Tomo Live algorithms and workflow are described and representative results on several biological samples are presented. The Tomo Live workflow is accessible to both expert and non-expert users, making it a valuable tool for the continued advancement of structural biology, cell biology and histology.
低温电子断层扫描的数据采集和处理可能成为用户的一大瓶颈。为了简化和精简低温电子断层扫描的工作流程,Tomo Live 应运而生,这是一种可自动对齐和重建倾斜系列数据的即时解决方案,可实现实时数据质量评估。通过将 Tomo Live 集成到冷冻电子显微镜的数据采集工作流程中,可在每次采集倾斜角度后直接进行运动校正。倾斜序列采集完成后,立即进行无人值守的倾斜序列配准并重建为三维体积。结果实时显示在显微镜硬件上运行的专用远程网络平台上。通过该网络平台,用户可以查看获取的数据(对齐的堆栈和三维体积)以及在对齐和重建过程中获得的多个质量指标。这些质量指标可用于后续采集的快速反馈,以节省时间。配准精度、删除的倾斜度和倾斜轴校正角度等参数可视化为图表,并可用作过滤器,只导出最佳断层图像(原始数据、重建数据和中间数据)进行进一步处理。这里介绍了 Tomo Live 算法和工作流程,并展示了几个生物样本的代表性结果。Tomo Live 工作流程对专家和非专家用户都适用,是结构生物学、细胞生物学和组织学不断进步的重要工具。