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Can image-domain filtering of FBP CT reconstructions match low-contrast performance of iterative reconstructions?

机译:IMBP CT重建的图像域滤波匹配迭代重建的低对比度性能吗?

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In large part from concerns about radiation exposure from computed tomography (CT), iterative reconstruction (IR) has emerged as a popular technique for dose reduction. Although IR clearly reduces image noise and improves resolution, its ability to maintain or improve low-contrast detectability over (possibly post-processed) filtered backprojection (FBP) reconstructions is unclear. In this work, we have scanned a low contrast phantom encased in an acrylic oval using two vendors' scanners at 120 kVp at three dose levels for axial and helical acquisitions with and without automatic exposure control. Using the local noise power spectra of the FBP and IR images to guide the filter design, we developed a two-dimensional angularly-dependent Gaussian filter in the frequency domain that can be optimized to minimize the root-mean-square error between the image-domain filtered FBP and IR reconstructions. The filter is extended to three-dimensions by applying a through-slice Gaussian filter in the image domain. Using this three-dimensional, non-isotropic filtering approach on data with non-uniform statistics from both scanners, we were able to process the FBP reconstructions to closely match the low-contrast performance of IR images reconstructed from the same raw data. From this, we conclude that most or all of the benefits of noise reduction and low-contrast performance of advanced reconstruction can be achieved with adaptive linear filtering of FBP reconstructions in the image domain.
机译:大部分涉及从计算机断层扫描(CT)的辐射曝光,迭代重建(IR)被出现为剂量减少的流行技术。虽然IR清楚地降低了图像噪声并提高了分辨率,但其维持或改善低对比度可检测性的能力(可能后处理)滤波反射(FBP)重建尚不清楚。在这项工作中,我们在三种剂量水平下使用两个供应商的扫描仪扫描在丙烯酸椭圆形的低对比度幽灵,用于轴向和螺旋采集,无需自动曝光控制。使用FBP和IR图像的本地噪声功率谱来引导滤波器设计,我们在频域中开发了一个二维角度依赖的高斯滤波器,可以优化以最小化图像之间的根均方误差域过滤的FBP和IR重建。通过在图像域中应用贯穿切片高斯滤波器,滤波器扩展到三维。使用这种三维非各向同性过滤方法对来自两个扫描仪的非均匀统计数据的数据,我们能够处理FBP重建以与来自相同原始数据重建的IR图像的低对比度性能密切匹配。由此,我们得出结论,通过在图像域中的FBP重建的自适应线性滤波,可以实现大多数或所有高度重建的低对比度性能的益处。

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