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Impact of flat panel-imager veiling glare on scatter-estimation accuracy and image quality of a commercial on-board cone-beam CT imaging system

机译:平板成像仪遮盖眩光对商用车载锥束CT成像系统的散射估计精度和图像质量的影响

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摘要

>Purpose: The purposes of this study is to measure the low frequency drop (LFD) of the modulation transfer function (MTF), associated with the long tails of the detector point spread function (PSF) of an on-board flat panel imager and study its impact on cone-beam CT (CBCT) image quality and scatter measurement accuracy.>Methods: Two different experimental methods were used to characterize LFD and its associated PSF of a Varian OBI flat-panel detector system: the edge response function (ERF) method and the disk transfer function (DTF) method. PSF was estimated by fitting parametric models to these measurements for four values of the applied voltage (kVp). The resultant PSF was used to demonstrate the effect of LFD on image contrast and CT number accuracy in CBCT images reconstructed from synthetic datasets, as well as, accuracy of scatter measurements with the beam-stop method.>Results: The MTFs derived from the measured ERF data revealed LFDs varying from 8% (at 60 kVp) to 10.5% (at 120 kVp), while the intensity of the long PSF tails was found to increase with increasing kVp. The veiling glare line spread functions derived from the ERF and DTF methods were in excellent agreement. Uncorrected veiling glare reduced contrast and the image intensity in CBCT reconstruction, near the phantom periphery (by 67 Hounsfield units in a 20 cm-in-diameter water phantom) and (to a smaller degree) near inhomogeneities. Use of the bow-tie filter mitigated these effects. Veiling glare also resulted in about 10%–15% overestimation of the scatter-to-primary ratio when measured with the beam-stop or beam-stop array method.>Conclusions: The long tails of the detector PSF were found to have a modest dependence of beam spectrum, which is reflected on the MTF curve LFD. Our findings show that uncorrected veiling glare can affect quantitative accuracy and contrast in CBCT imaging, based on flat panel imager. In addition, it results in overestimation of the scatter-to-primary ratio, measured with the beam-stop methods.
机译:>目的:本研究的目的是测量调制传递函数(MTF)的低频下降(LFD),它与检测器点扩展函数(PSF)的长尾巴相关。平板成像器并研究其对锥束CT(CBCT)图像质量和散射测量精度的影响。>方法:使用两种不同的实验方法来表征Varian OBI的LFD及其相关的PSF平板探测器系统:边缘响应函数(ERF)方法和磁盘传递函数(DTF)方法。通过将参数模型拟合到这些测量的四个施加电压(kVp)值来估算PSF。所得的PSF用于证明LFD对从合成数据集重建的CBCT图像中的图像对比度和CT数精度的影响,以及使用束停止法进行散射测量的准确性。>结果:从测得的ERF数据得出的MTF显示,LFD从8%(在60 kVp时)到10.5%(在120 kVp时)变化,而长PSF尾部的强度随kVp的增加而增加。从ERF和DTF方法获得的面纱眩光线扩散函数非常吻合。未经校正的面纱眩光会降低CBCT重建过程中在幻影外围附近(在20厘米直径的水幻影中减少67个Hounsfield单位)和(在较小程度上)不均匀性附近的对比度和图像强度。领结式过滤器的使用减轻了这些影响。使用光束停止器或光束停止器阵列法进行测量时,遮盖眩光还会导致散射/主要比率的估计值高估约10%-15%。>结论:检测器PSF的长尾巴MFT曲线LFD反映了对光束频谱的适度依赖。我们的发现表明,基于平板成像仪,未校正的面纱眩光会影响CBCT成像的定量精度和对比度。此外,它会导致使用波束停止方法测得的散射与原始比率的高估。

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