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A simple, direct method for x-ray scatter estimation and correction in digital radiography and cone-beam CT.

机译:一种简单直接的方法,用于数字射线照相和锥形束CT中的X射线散射估计和校正。

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X-ray scatter poses a significant limitation to image quality in cone-beam CT (CBCT), resulting in contrast reduction, image artifacts, and lack of CT number accuracy. We report the performance of a simple scatter correction method in which scatter fluence is estimated directly in each projection from pixel values near the edge of the detector behind the collimator leaves. The algorithm operates on the simple assumption that signal in the collimator shadow is attributable to x-ray scatter, and the 2D scatter fluence is estimated by interpolating between pixel values measured along the top and bottom edges of the detector behind the collimator leaves. The resulting scatter fluence estimate is subtracted from each projection to yield an estimate of the primary-only images for CBCT reconstruction. Performance was investigated in phantom experiments on an experimental CBCT bench-top, and the effect on image quality was demonstrated in patient images (head, abdomen, and pelvis sites) obtained on a preclinical system for CBCT-guided radiation therapy. The algorithm provides significant reduction in scatter artifacts without compromise in contrast-to-noise ratio (CNR). For example, in a head phantom, cupping artifact was essentially eliminated, CT number accuracy was restored to within 3%, and CNR (breast-to-water) was improved by up to 50%. Similarly in a body phantom, cupping artifact was reduced by at least a factor of 2 without loss in CNR. Patient images demonstrate significantly increased uniformity, accuracy, and contrast, with an overall improvement in image quality in all sites investigated. Qualitative evaluation illustrates that soft-tissue structures that are otherwise undetectable are clearly delineated in scatter-corrected reconstructions. Since scatter is estimated directly in each projection, the algorithm is robust with respect to system geometry, patient size and heterogeneity, patient motion, etc. Operating without prior information, analytical modeling, or Monte Carlo, the technique is easily incorporated as a preprocessing step in CBCT reconstruction to provide significant scatter reduction.
机译:X射线散射严重限制了锥束CT(CBCT)的图像质量,从而导致对比度降低,图像伪影和CT数精度不足。我们报告了一种简单的散射校正方法的性能,在该方法中,直接在每个投影中根据准直仪叶片后面检测器边缘附近的像素值估算散射通量。该算法基于以下简单假设进行操作:准直仪阴影中的信号可归因于X射线散射,并且通过在沿准直仪叶片后沿探测器顶部和底部边缘测量的像素值之间进行插值来估算2D散射通量。从每个投影中减去所得的散射通量估计,以得出用于CBCT重建的仅主要图像的估计。在CBCT实验台上的幻像实验中研究了性能,并在临床前系统CBCT指导的放射治疗中获得的患者图像(头部,腹部和骨盆部位)中证明了对图像质量的影响。该算法可显着减少散射伪影,而不会影响对比度和噪声比(CNR)。例如,在头部幻影中,拔罐伪影已基本消除,CT数准确性恢复到3%以内,CNR(从乳房到水)提高了50%。同样,在人体模型中,拔罐伪影至少减少了2倍,而CNR却没有损失。患者图像显示出均匀性,准确性和对比度显着提高,并且在所有调查部位的图像质量均得到总体改善。定性评估表明,在散射校正后的重建中清楚地描绘了原本无法检测到的软组织结构。由于直接在每个投影中估计散射,因此该算法在系统几何形状,患者规模和异质性,患者运动等方面均非常可靠。无需事先信息,分析模型或Monte Carlo操作即可轻松实现该技术,作为预处理步骤在CBCT重建中可以显着减少散射。

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