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X-ray microtomography: three-dimensional reconstruction methods for x-ray microscopy of biological samples

机译:X射线显微镜:生物样品X射线显微镜三维重建方法

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Biological soft x-ray microscopy using x-ray optics and synchrotron sources has made possible quantitative, element-specific imaging of whole cells in aqueous media at significantly higher resolutions than those of conventional visible light methods. Tomographic reconstruction has been proposed as a means to realize the full potential of the method for viewing thick objects whose structures would otherwise be superimposed in single view projections. The authors present an iterative tomographic reconstruction algorithm, using a regularized weighted least squares objective function, accelerated with the conjugate gradient approach, and modified for the problem of transmission tomography with correction of blurring by an instrumental point spread function. The non-negativity constraint is implemented using a preconditioner. We show by computer simulations that reconstructions that meet realistic and acceptable goals for spatial and density resolution should be achievable at doses compatible with the structural integrity of biological samples at the specific resolution.
机译:使用X射线光学器件和同步旋流源的生物软X射线显微镜通过含水介质中的整个细胞的定量,元素特异性成像在显着更高的分辨率上比常规可见光方法的分辨率显着更高。已经提出了断层切断重建作为实现用于观看厚实物体的方法的全部潜力,其结构将在单视图投影中叠加。作者呈现了一种迭代断层切断重建算法,使用正则化加权最小二乘目标函数,与缀合格梯度方法加速,并通过仪器点扩散函数校正模糊的透射断层扫描的问题。使用预处理器实现非消极性约束。我们通过计算机模拟显示满足空间和密度分辨率的现实和可接受的目标的重建应以与特定分辨率的生物样品的结构完整性相容。

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