论文标题

Sparsealign:一种用于自动标记本定位的超分辨率算法和冷冻电子断层扫描中的变形估计

SparseAlign: A Super-Resolution Algorithm for Automatic Marker Localization and Deformation Estimation in Cryo-Electron Tomography

论文作者

Ganguly, Poulami Somanya, Lucka, Felix, Kohr, Holger, Franken, Erik, Hupkes, Hermen Jan, Batenburg, K Joost

论文摘要

倾斜系列对齐对于获得低分辨率重建至关重要。光束诱导的样品的局部变形很难单独从低对比度样品中估算出来,并且通常需要基准的金珠标记。变形估计用途的最新方法(半)在投影数据中手动标记位置,以符合多项式变形模型的参数。当数据是嘈杂或标记重叠的投影数据时,难以获得手动标记的标记位置。我们提出了一种通过在单分子定位显微镜背景下首先提出的无网级超分辨率算法来提出的替代数学方法,用于同时标记定位和变形估计。我们的方法不需要标记的标记位置;取而代之的是,我们使用基于图像的损失,其中将标记的正向投影与观察到的数据进行比较。我们为该标记的定位方案配备了额外的变形估计分量,并求解减少的变形参数。使用有关仅标记样品的大量数值研究,我们表明我们的方法自动找到标记并可靠地估计样品变形而没有标记数据。我们进一步证明了我们的方法适用于广泛的模型不匹配方案,包括冰上金标记的实验电子断层扫描数据。

Tilt-series alignment is crucial to obtaining high-resolution reconstructions in cryo-electron tomography. Beam-induced local deformation of the sample is hard to estimate from the low-contrast sample alone, and often requires fiducial gold bead markers. The state-of-the-art approach for deformation estimation uses (semi-)manually labelled marker locations in projection data to fit the parameters of a polynomial deformation model. Manually-labelled marker locations are difficult to obtain when data are noisy or markers overlap in projection data. We propose an alternative mathematical approach for simultaneous marker localization and deformation estimation by extending a grid-free super-resolution algorithm first proposed in the context of single-molecule localization microscopy. Our approach does not require labelled marker locations; instead, we use an image-based loss where we compare the forward projection of markers with the observed data. We equip this marker localization scheme with an additional deformation estimation component and solve for a reduced number of deformation parameters. Using extensive numerical studies on marker-only samples, we show that our approach automatically finds markers and reliably estimates sample deformation without labelled marker data. We further demonstrate the applicability of our approach for a broad range of model mismatch scenarios, including experimental electron tomography data of gold markers on ice.

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