利用多孔径设备实现和评估动态流场调制。

Grace J Gang, Andrew Mao, Jeffrey H Siewerdsen, J Webster Stayman
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引用次数: 0

摘要

这项工作报告了使用双多孔径装置(MAD)系统进行动态通量场调制(FFM)的实验结果。MAD 过滤器使用两组不同宽度和间距的高衰减钨条之间的相对运动产生的莫伊里纹。每个 MAD 都固定在一个线性致动器上,并安装在锥形束 CT 实验台上。根据平整度和最小平均方差目标设计了特定于幻影的 FFM 曲线,并通过 MAD 平移和恒定管电流下的脉冲宽度调制相结合来实现。为了正确校正与 MAD 滤波器相关的增益,设计了一种校正算法,以考虑扫描过程中的焦斑移动,以及钨棒对 X 射线的不完全阻挡所产生的光谱效应。在一个椭圆形模型(25.8×14.1 厘米)中演示了 FFM 设计。对重建结果进行了方差和噪声功率谱分析。传统的伽马校正会在轴向切片中产生带有高频环状伪影的重构,而所提出的校正算法则能有效去除这些伪影,同时保留幻影的细节。利用 0.44 毫米范围内的相对 MAD 运动实现了椭圆形模型的流场设计,测量的光束轮廓与理论计算的目标轮廓非常接近。重建结果的噪声特性符合预期:与未调制扫描相比,平场检测通量标准产生了近乎各向同性的 NPS 和更均匀的重建方差;与未调制和平场模式相比,最小平均方差 FFM 在大致匹配的裸光束总通量下产生了更低的平均方差。这些结果表明,双 MAD CT 是一种有效的流量和图像质量控制方法,有可能适应各种模型和设计目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Implementation and Assessment of Dynamic Fluence Field Modulation with Multiple Aperture Devices.

This work reports experimental results of dynamic fluence field modulation (FFM) using a dual multiple aperture devices (MAD) system. MAD filters use Moiré patterns produced by relative motions between two sets of thin, highly attenuating tungsten bars of varying widths and spacings. Each MAD was affixed to a linear actuator and installed on an experimental cone-beam CT bench. Phantom-specific FFM profiles were designed based on a flatness and minimum mean variance objectives and realized through a combination of MAD translations and pulse width modulation at a constant tube current. To properly correct for gains associated with the MAD filters, a correction algorithm was designed to account for focal spot shifts during scanning, as well as spectral effects from incomplete blockage of x-rays by the tungsten bars. The FFM designs were demonstrated in an elliptical phantom (25.8×14.1 cm). Variance and noise power spectrum (NPS) analysis was performed on the resulting reconstructions. While conventionalgain correction produced reconstructions with high frequency ring artifacts in axial slices, the proposed correction algorithm effectively removed such artifacts while preserving phantom details. Fluence field designs for the elliptical phantom were achievedusing relative MAD motions over a 0.44 mm range, and measured beam profiles closely approximated the theoretically computed target profiles. The noise properties of the resulting reconstructions behave as expected: a flat detected fluence criterion yields nearly isotropic NPS and more homogeneous variance across the reconstruction as compared to an unmodulated scan; the minimum mean variance FFM results in lower mean variance compared to both the unmodulated and flat-field patterns at approximately matched total bare-beam fluence. These results suggest that a dual-MAD CT is an effective approach to provide fluence and image quality control and that can potentially accommodate a wide range of phantoms and design objectives.

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