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Application of contrast-to-noise ratio in optimizing beam quality for digital chest radiography: comparison of experimental measurements and theoretical simulations

机译:对比噪声比在优化数字胸部X射线摄影机光束质量中的应用:实验测量与理论模拟的比较

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摘要

The contrast-to-noise ratio (CNR) has been employed in optimizing beam quality for imaging a chest phantom using digital radiography. The relationship between CNR and tube potential has been studied for regions of different attenuations representing the lung, heart and abdomen, and a figure of merit (FOM) incorporating effective dose has been calculated to enable dose performance to be included. Direct measurements of imaging performance have been compared with simulations based on a model representing object attenuations. The study has shown reasonable agreement between measurements of CNR and calculated values. The CNR values in the lung and heart regions are higher at 60-80 kV, while those for the abdomen are higher at 90-110 kV. Incorporating a 0.2 mm copper filter has minimal effect on image quality and the FOM is higher because of the reduction in dose. For imaging the heart and abdomen, performance was improved through use of a technique to remove scatter, with an air-gap technique giving a higher FOM because of the lower dose. The CNR and FOM can provide useful quantities for evaluating imaging performance to optimize beam quality for different imaging tasks.
机译:对比噪声比(CNR)已用于优化光束质量,以使用数字射线照相术对胸部模型进行成像。对于代表肺,心脏和腹部的不同衰减区域,已经研究了CNR与管电位之间的关系,并计算了包含有效剂量的品质因数(FOM)以包括剂量性能。已经将成像性能的直接测量值与基于代表对象衰减的模型的模拟进行了比较。研究表明,CNR的测量值与计算值之间存在合理的一致性。肺和心脏区域的CNR值在60-80 kV时较高,而腹部的CNR值在90-110 kV时较高。内置0.2毫米铜滤镜对图像质量的影响最小,并且由于减少了剂量,因此FOM更高。对于心脏和腹部的成像,通过使用消除散射的技术提高了性能,而气隙技术由于剂量较低,因此可提供较高的FOM。 CNR和FOM可以为评估成像性能提供有用的量,以优化不同成像任务的光束质量。

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