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Validation of an image simulation technique for two computed radiography systems: an application to neonatal imaging.

机译:两种计算机放射成像系统的图像仿真技术的验证:在新生儿成像中的应用。

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PURPOSE: The purpose of this study is to develop a computer model to simulate the image acquisition for two computed radiography (CR) imaging systems used for neonatal chest imaging: (1) The Agfa ADC Compact, a flying spot reader with powder phosphor image plates (MD 40.0); and (2) the Agfa DX-S, a line-scanning CR reader with needle crystal phosphor image plates (HD 5.0). The model was then applied to compare the image quality of the two CR imaging systems. METHODS: Monte Carlo techniques were used to simulate the transport of primary and scattered x rays in digital x-ray systems. The output of the Monte Carlo program was an image representing the energy absorbed in the detector material. This image was then modified using physical characteristics of the CR imaging systems to account for the signal intensity variations due to the heel effect along the anode-cathode axis, the spatial resolution characteristics of the imaging system, and the various sources of image noise. The simulation was performed for typical acquisition parameters of neonatal chest x-ray examinations. To evaluate the computer model, the authors compared the threshold-contrast detectability in simulated and experimentally acquired images of a contrast-detail phantom. Threshold-contrast curves were computed using a commercially available scoring program. RESULTS: The threshold-contrast curves of the simulated and experimentally acquired images show good agreement; for the two CR systems, 93% of the threshold diameters calculated from the simulated images fell within the confidence intervals of the threshold diameter calculated from the experimentally assessed images. Moreover, the superiority of needle based CR plates for neonatal imaging was confirmed. CONCLUSIONS: The good agreement between simulated and experimental acquired results indicates that the computer model is accurate.
机译:目的:本研究的目的是开发一种计算机模型,以模拟用于新生儿胸部成像的两个计算机射线照相(CR)成像系统的图像采集:(1)Agfa ADC Compact,一种带有粉末荧光粉成像板的飞点读取器(MD 40.0); (2)爱克发DX-S,一种带有针状磷光体图像板的高清线扫描CR读取器(HD 5.0)。然后将该模型应用于比较两个CR成像系统的图像质量。方法:采用蒙特卡洛技术模拟数字X射线系统中主要X射线和散射X射线的传输。蒙特卡洛程序的输出是代表检测器材料吸收的能量的图像。然后使用CR成像系统的物理特性修改此图像,以解决由于沿阳极-阴极轴的横倾效应,成像系统的空间分辨率特性以及各种图像噪声源而引起的信号强度变化。对新生儿胸部X光检查的典型采集参数进行了仿真。为了评估计算机模型,作者在对比细节体模的仿真图像和实验获取图像中比较了阈值对比度可检测性。使用市售评分程序计算阈值对比度曲线。结果:模拟和实验获得的图像的阈值对比度曲线显示出良好的一致性;对于两个CR系统,从模拟图像计算出的阈值直径的93%落在从实验评估图像计算出的阈值直径的置信区间内。而且,证实了基于针的CR板在新生儿成像中的优越性。结论:模拟和实验获得的结果之间的良好一致性表明该计算机模型是准确的。

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