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Artifacts Reduction in Low-Contrast Neurological Imaging with C-arm System

机译:用C臂系统降低低对比度神经成像的文物

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C-arm cone-beam CT (CBCT) is adopted rapidly for imaging-guidance in intervcntional and surgical procedures. However, measured CBCT data are truncated often due to the limited detector size especially in the presence of additional interventional devices outside the imaging field of view (FOV). In our previous work, it has been demonstrated that a constrained optimization-based reconstruction with an additional data-derivative fidelity term can effectively suppress the truncation artifacts. In this work, in attempt to evaluate the optimization-based reconstruction, two task-relevant metrics, are proposed for characterization of the recovery of the low-contrast objects and the reduction of streak artifacts. Results demonstrate that the optimization program and the associated CP algorithms can significantly reduce streak artifacts, leading to improved visualization of low-contrast structures in the reconstruction relative to clinical FDK reconstruction.
机译:C形臂锥梁CT(CBCT)被迅速采用跨文体和外科手术中的成像引导。然而,测量的CBCT数据通常由于有限的检测器尺寸而被截断,特别是在成像视场外的附加介入装置(FOV)之外存在。在我们以前的工作中,已经证明,基于约束的基于优化的重建,具有额外的数据衍生待遇术语可以有效地抑制截断伪像。在这项工作中,为了评估基于优化的重建,建议进行两项任务相关的度量,以表征恢复低对比度物体的恢复和条纹伪影的减少。结果表明,优化程序和相关的CP算法可以显着减少条纹伪像,从而改善了相对于临床FDK重建的重建中的低对比度结构的可视化。

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