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Tilted grating phase-contrast computed tomography using statistical iterative reconstruction

机译:使用统计迭代重建的倾斜光栅相衬计算机断层扫描

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Grating-based phase-contrast computed tomography (GBPC-CT) enables increased soft tissue differentiation, but often suffers from streak artifacts when performing high-sensitivity GBPC-CT of biomedical samples. Current GBPC-CT setups consist of one-dimensional gratings and hence allow to measure only the differential phase-contrast (DPC) signal perpendicular to the direction of the grating lines. Having access to the full two-dimensional DPC signal can strongly reduce streak artefacts showing up as characteristic horizontal lines in the reconstructed images. GBPC-CT with gratings tilted by 45° around the optical axis, combining opposed projections, and reconstructing with filtered backprojection is one method to retrieve the full three-dimensional DPC signal. This approach improves the quality of the tomographic data as already demonstrated at a synchrotron facility. However, additional processing and interpolation is necessary, and the approach fails when dealing with cone-beam geometry setups. In this work, we employ the tilted grating configuration with a laboratory GBPC-CT setup with cone-beam geometry and use statistical iterative reconstruction (SIR) with a forward model accounting for diagonal grating alignment. Our results show a strong reduction of streak artefacts and significant increase in image quality. In contrast to the prior approach our proposed method can be used in a laboratory environment due to its cone-beam compatibility.
机译:基于光栅的相衬计算机断层扫描(GBPC-CT)可以增加软组织的分化,但是在对生物医学样品进行高灵敏度GBPC-CT时经常会出现条纹伪影。当前的GBPC-CT设置由一维光栅组成,因此只能测量垂直于光栅线方向的差分相差(DPC)信号。可以访问完整的二维DPC信号可以极大地减少条纹伪影,这些伪影在重建图像中显示为特征水平线。具有绕光轴倾斜45°的光栅的GBPC-CT,组合相对的投影,并使用滤波后的反投影进行重构,是检索完整三维DPC信号的一种方法。正如在同步加速器设施中已经证明的那样,这种方法提高了层析成像数据的质量。但是,额外的处理和插值是必需的,并且在处理锥束几何设置时该方法将失败。在这项工作中,我们将倾斜的光栅配置与具有锥形束几何结构的实验室GBPC-CT装置一起使用,并使用统计迭代重建(SIR)和正向模型来说明对角光栅对准。我们的结果表明,条纹伪影大大减少,图像质量显着提高。与现有方法相反,我们提出的方法由于其锥束兼容性而可以在实验室环境中使用。

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