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Evaluation of scatter mitigation strategies for x-ray cone-beam CT: impact of scatter subtraction and anti-scatter grids on contrast-to-noise ratio

机译:X射线锥梁CT的散点图策略评价:散射减法和抗散射网格对对比度噪声的影响

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The large contribution of scatter to cone-beam computed tomography (CBCT) x-ray projections significantly degrades image quality, both through streaking and cupping artifacts and by loss of low contrast boundary detectability. The goal of this investigation is to compare the efficacy of three widely used scatter mitigation methods: subtractive scatter correction (SSC); anti-scatter grids (ASG); and beam modulating with bowtie filters; for improving signal-to-noise ratio (SNR), contrast, contrast-to-noise ratio (CNR) and cupping artifacts. A simple analytic model was developed to predict scatter-to-primary ratio (SPR) and CNR as a function of cylindrical phantom thickness. In addition, CBCT x-ray projections of a CatPhan QA phantom were measured, using a Varian CBCT imaging system, and computed, using an inhouse Monte Carlo photon-transport code to more realistically evaluate the impact of scatter mitigation techniques. Images formed with uncorrected sinograms acquired without ASGs and bow-tie filter show pronounced cupping artifacts and loss of contrast. Subtraction of measured scatter profiles restores image uniformity and CT number accuracy, but does not improve CNR, since the improvement in contrast almost exactly offset by the increase in relative x-ray noise. ASGs were found to modestly improve CNR (up to 20%, depending ASG primary transmission and selectivity) only in body scans, while they can reduce CNR for head phantoms where SPR is low.
机译:散射到锥形束计算机断层扫描(CBCT)X射线投影的大贡献显着降低了通过条纹和拔罐伪像的图像质量,并通过低对比度边界可检测性丢失。该调查的目标是比较三种广泛使用的散点减缓方法的功效:减肥散射校正(SSC);反散射网格(ASG);和梁用蝴蝶结过滤器调节;为了提高信噪比(SNR),对比度,对比度 - 噪声比(CNR)和拔罐伪像。开发了一种简单的分析模型,以预测散射对主比(SPR)和CNR,作为圆柱形模厚度的函数。另外,使用瓦朗CBCT成像系统和计算的CATPHAN QA幻影的CBCT X射线投影使用INHOUSE MONTE CARLO PHOTON运输代码来更新地评估散射缓解技术的影响。用没有ASG的未校正的中央图表形成的图像,并且弓形滤波器显示出明显的拔罐伪影和对比度的损失。减法测量的散射曲线恢复图像均匀性和CT数精度,但不改善CNR,因为对比度的改进几乎完全偏移,而通过相对X射线噪声的增加几乎偏移。发现ASGS仅在体扫描中谦虚地改善CNR(高达20%,取决于ASG主要传输和选择性),同时可以减少SPR低位的头部幻影的CNR。

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