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The x-ray light valve: A low-cost, digital radiographic imaging system—Spatial resolution

机译:X射线光阀:一种低成本的数字射线照相成像系统-空间分辨率

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摘要

An x-ray light valve (XLV) coupled with an optical scanner has the potential to meet the need for a low-cost, high quality digital imaging system for general radiography. The XLV∕scanner concept combines three well-established, and hence, low-cost technologies: An amorphous selenium (a-Se) layer as an x-ray-to-charge transducer, a liquid crystal (LC) cell as an analog display, and an optical scanner for image digitization. The XLV consists of an a-Se layer and LC cell in a sandwich structure which produces an optical image in the LC layer upon x-ray exposure. The XLV∕scanner system consists of an XLV in combination with an optical scanner for image readout. Here, the effect of each component on the spatial resolution of an XLV∕scanner system is investigated. A theoretical model of spatial resolution of an XLV is presented based on calculations of the modulation transfer function (MTF) for a-Se and a LC cell. From these component MTFs, the theoretical MTF of the XLV is derived. The model was validated by experiments on a prototype XLV∕scanner system. The MTF of the scanner alone was obtained by scanning an optical test target and the MTF of the XLV∕scanner system was measured using x rays. From the measured MTF of the scanner, the theoretical MTF of the XLV∕scanner system was established and compared with the experimental results. Good general agreement exists between experimental and theoretical results in the frequency range of interest for general radiography, although the theoretical curves slightly overstate the measured MTFs. The experimental MTF of the XLV was compared with the MTF of two clinical systems and was shown to have the capability to exceed the resolution of flat-panel detectors. From this, the authors can conclude that the XLV has an adequate resolution for general radiography. The XLV∕scanner also has the potential to eliminate aliasing while maintaining a MTF that exceeds that of a flat-panel imager.
机译:结合光学扫描仪的X射线光阀(XLV)可以满足一般放射线照相的低成本,高质量数字成像系统的需求。 XLV ∕ scanner的概念结合了三项行之有效的低成本技术:非晶硒(a-Se)层作为x射线电荷传感器,液晶(LC)池作为模拟显示器,以及用于图像数字化的光学扫描仪。 XLV由夹层结构中的a-Se层和LC单元组成,该结构在X射线曝光后在LC层中产生光学图像。 XLV ∕ scanner系统由XLV结合光学扫描仪组成,用于图像读取。在这里,研究了每种成分对XLV ∕ scanner系统空间分辨率的影响。基于a-Se和LC单元的调制传递函数(MTF)的计算,提出了XLV的空间分辨率的理论模型。从这些组件MTF中可以得出XLV的理论MTF。通过在原型XLV ∕ scanner系统上进行的实验验证了该模型。单独的扫描仪的MTF是通过扫描光学测试目标获得的,而XLV ∕ scanner系统的MTF是使用X射线测量的。从测量的扫描仪的MTF,建立了XLV ∕ scanner系统的理论MTF,并将其与实验结果进行了比较。尽管理论曲线稍微高估了测得的MTF,但在一般射线照相感兴趣的频率范围内,实验结果和理论结果之间存在良好的一般一致性。将XLV的实验MTF与两个临床系统的MTF进行了比较,结果表明它们具有超过平板探测器分辨率的能力。据此,作者可以得出结论,XLV具有足够的一般X射线照相分辨率。 XLV扫描仪还可以消除混叠现象,同时保持MTF超过平板成像仪的MTF。

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