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Evaluation of an Edge Method for Computed Radiography and an Electronic Portal Imaging Device in Radiotherapy: Image Quality Measurements

机译:放射治疗中计算机射线照相术和电子门成像设备的边缘方法评估:图像质量测量

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Regular quality assurance (QA) of image quality is essential for reasonable patient dose and accurate treatment. Thus, QA should be performed as a routine for correction. The purpose of this study was to evaluate the modulation transfer function (MTF), the noise power spectrum (NPS) and the detective quantum efficiency (DQE) of the computed radiography (CR) system and the digital radiography (DR) system by using the edge method in megavoltage X-ray imaging (MVI). We used an edge block, which consisting of tungsten with dimensions of 19 (thickness) x 10 (length) x 1 (width) cm(3) and measured the pre-sampling MTF by using a 6-megavolt (MV) energy. Computed radiography with an image plate (CR-IP) showed the values of 0.4 mm(-1) and 1.19 mm(-1) for MTF 0.5 and 0.1. In the DR group, Elekta iViewGT showed the highest value of 0.27 mm(-1) for MTF 0.5, and Siemens BEAMVIEW(PLUS) showed the highest value of 0.98 mm(-1) for MTF 0.1. In CR, the NPS of CR-IP showed a favorable noise distribution. Thus, in the DR group, the NPS of Elekta iViewGT showed the highest noise distribution. CR-IP showed values at peak DQE and 1 mm(-1) DQE of 0.0013 and 0.00011, respectively. In the DR group, Elekta iViewGT showed the best efficiency at a peak DQE of 0.0009, and Siemens BEAMVIEW(PLUS) showed the best efficiency at a 1-mm(-1) DQE of 0.000008. The edge method produced fast assessments of the MTF and the DQE. We could validate the evaluation of the edge method by comparing of the CR system to the DR system. This study demonstrated that the edge method can be used for not only traditional QA imaging but also quantitative MTF, NPS and DQE measurements in detector development.
机译:定期的图像质量保证(QA)对于合理的患者剂量和准确的治疗至关重要。因此,应将QA作为校正例程执行。这项研究的目的是通过使用计算机辅助放射成像(CR)系统和数字放射成像(DR)系统评估调制传递函数(MTF),噪声功率谱(NPS)和探测量子效率(DQE)。电压X射线成像(MVI)中的边缘法。我们使用了一个边块,该边块由尺寸为19(厚度)x 10(长度)x 1(宽度)cm(3)的钨组成,并通过使用6兆伏(MV)的能量来测量预采样MTF。用图像板(CR-IP)进行的计算机射线照相术显示,对于MTF 0.5和0.1,其值为0.4 mm(-1)和1.19 mm(-1)。在DR组中,Elekta iViewGT对MTF 0.5的最高值为0.27 mm(-1),而Siemens BEAMVIEW(PLUS)对MTF 0.1的最高值为0.98 mm(-1)。在CR中,CR-IP的NPS表现出良好的噪声分布。因此,在DR组中,Elekta iViewGT的NPS显示出最高的噪声分布。 CR-IP在峰值DQE和1 mm(-1)DQE处分别显示了0.0013和0.00011的值。在DR组中,Elekta iViewGT在峰值DQE为0.0009时显示出最佳效率,而Siemens BEAMVIEW(PLUS)在1-mm(-1)DQE为0.000008时显示出最佳效率。边缘法可以快速评估MTF和DQE。通过将CR系统与DR系统进行比较,我们可以验证边缘方法的评估。这项研究表明,边缘法不仅可以用于传统的QA成像,而且可以用于检测器开发中的定量MTF,NPS和DQE测量。

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