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3-D shape estimation of DNA molecules from stereo cryo-electron micro-graphs using a projection-steerable snake

机译:使用投影可控蛇从立体低温电子显微照片估计DNA分子的3D形状

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We introduce a three-dimensional (3-D) parametric active contour algorithm for the shape estimation of DNA molecules from stereo cryo-electron micrographs. We estimate the shape by matching the projections of a 3-D global shape model with the micrographs; we choose the global model as a 3-D filament with a B-spline skeleton and a specified radial profile. The active contour algorithm iteratively updates the B-spline coefficients, which requires us to evaluate the projections and match them with the micrographs at every iteration. Since the evaluation of the projections of the global model is computationally expensive, we propose a fast algorithm based on locally approximating it by elongated blob-like templates. We introduce the concept of projection-steerability and derive a projection-steerable elongated template. Since the two-dimensional projections of such a blob at any 3-D orientation can be expressed as a linear combination of a few basis functions, matching the projections of such a 3-D template involves evaluating a weighted sum of inner products between the basis functions and the micrographs. The weights are simple functions of the 3-D orientation and the inner-products are evaluated efficiently by separable filtering. We choose an internal energy term that penalizes the average curvature magnitude. Since the exact length of the DNA molecule is known a priori, we introduce a constraint energy term that forces the curve to have this specified length. The sum of these energies along with the image energy derived from the matching process is minimized using the conjugate gradients algorithm. We validate the algorithm using real, as well as simulated, data and show that it performs well.
机译:我们介绍了一种三维(3-D)参数化主动轮廓算法,用于从立体冷冻电子显微照片估计DNA分子的形状。我们通过将3D整体形状模型的投影与显微照片进行匹配来估计形状;我们选择整体模型作为具有B样条骨架和指定径向轮廓的3-D灯丝。主动轮廓算法会迭代更新B样条系数,这要求我们评估投影并将其与显微照片在每次迭代时进行匹配。由于对全局模型的投影的评估在计算上是昂贵的,因此我们提出了一种基于算法的快速算法,该算法通过使用细长的Blob样模板局部近似。我们介绍了可投影性的概念,并推导了可投影性的细长模板。由于此类斑点在任何3-D方向上的二维投影都可以表示为一些基函数的线性组合,因此,匹配此类3-D模板的投影涉及评估两个基之间的内积加权和。功能和显微照片。权重是3-D方向的简单函数,并且通过可分离的过滤有效评估内积。我们选择一个惩罚平均曲率幅度的内部能量项。由于DNA分子的确切长度是先验已知的,因此我们引入了一个约束能量项,它迫使曲线具有指定的长度。使用共轭梯度算法将这些能量的总和以及从匹配过程中获得的图像能量最小化。我们使用真实数据和模拟数据验证算法,并证明其性能良好。

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